rfid chip numbering system biolog id tiny Search Results


96
New England Biolabs nebnext chip seq library prep master mix set for illumina
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Nebnext Chip Seq Library Prep Master Mix Set For Illumina, supplied by New England Biolabs, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
CH Instruments chi-square test
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Chi Square Test, supplied by CH Instruments, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
BioMimetic Therapeutics neuromorphic chip
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Neuromorphic Chip, supplied by BioMimetic Therapeutics, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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93
Novus Biologicals med12
TET3 affects DNA methylation and histone modifications of the <t>MED12,</t> TGFBR2, and TSP1 promoters. a UtLM cells were transfected with siCon or siTET3 for 48 h, followed by ChIP-qPCR analysis. Data are presented as mean relative TET3 enrichment over input. n = 3. Red numbers indicate nucleotide positions relative to the transcriptional start sites, with PCR products depicted as red-stripped bars. b Sequences of critical transcription regulatory regions (CTRR) of MED12 , TGFBR2 , and TSP1 . The differentially methylated cytosine residues are marked in red. The red numbers mark the positions of the indicated nucleotides relative to the transcriptional start sites. c UtLM cells were transfected with siCon or siTET3 for 48 h, followed by QMSP analysis. n = 3. d UtLM cells were transfected with siCon or siTET3 for 48 h, followed by ChIP-qPCR analysis. Data are presented as mean relative enrichment over input. n = 3. All data are representative of at least two independent experiments and are presented as mean ± SEM. * p < 0.05, ** p < 0.01
Med12, supplied by Novus Biologicals, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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94
Novus Biologicals hif 1β
rs4903064 resides in a renal cancer–associated regulatory element. A , ATAC-seq tracks from primary renal cancer cells at the DPF3 locus. The top track indicates SNPs in high LD with rs4903064 (r 2 > 0.8). ATAC-seq was performed in cells from three individuals with different rs4903064 genotypes (TT, CT, CC). KIRC RE indicates r egulatory e lements defined by ATAC-seq in ccRCC TCGA samples. B , zoomed in view of ( A ). SNP rs4903064 resides in open chromatin and in KIRC_67261. Please note that open chromatin is only detected in cells carrying the risk allele C. C , sequences of the two alleles at rs4903064. The risk allele C creates a putative hypoxia-responsive element (HRE). D , allele-specific qPCR assay for rs4903064 indicates a shift toward the risk allele C in DNA fragments captured by ATAC experiments in tumor cells ( red triangle ) or tubular cells exposed to <t>1</t> mM DMOG ( orange triangle ) when compared to input DNA or DNA from ATAC experiments in untreated tubular cells. Cells were isolated from an individual heterozygous for rs4903064. E , allelic ratio of rs4903064 in ATAC samples from tubular cells isolated from three individuals heterozygous for the SNP performed in triplicates. Cells were exposed to 1 mM DMOG for 16 h or left untreated. Bars indicate mean values ± SD. t test, ∗∗∗∗ p < 0.0001. F , allelic ratio of rs4903064 in FAIRE samples from cells of four heterozygous individuals. Cells were exposed to 1 mM DMOG for 16 h, and values were normalized to corresponding input DNA. The mean value for each individual is shown. Bars indicate mean values ± SD. ∗one sample t test, p < 0.05. G , reporter assay in HeLa cells using the pGL3 promoter vector with or without a 415 bp sequence covering the protective or the risk allele of rs4903064. Cells were treated with 1 mM DMOG for 16 h as indicated. Bars indicate mean values ± SD of one experiment performed in triplicates. H , HeLa cells were depleted for the indicated <t>HIF-α</t> isoforms using siRNA and transfected with the reporter plasmid including the risk allele. Cells were exposed to 1 mM DMOG for 16 h. Reporter activity was normalized to the activity of co-transfected β-galactosidase. Bars indicate mean values ± SD of one experiment performed in triplicates. I and J , DPF3 protein levels are high in HIF-positive ccRCC tumors. A total of 330 ccRCC tumors were stratified according to the immunoreactive score for HIF-1α, HIF-2α, and DPF3 staining in no, low, medium, or strong staining. Fractions of DPF3 signals are shown for each subgroup of HIF staining. Pearson χ 2 -test; p = 1.8 × 10 −8 for HIF-1α ( I ) and p = 0.003 for HIF-2α ( J ). ATAC, Assay for Transposase-Accessible Chromatin; ccRCC, clear cell renal cell carcinoma; DMOG, dimethyloxalylglycine; DPF3, double PHD fingers 3; FAIRE, formaldehyde-assisted isolation of regulatory elements; HIF, hypoxia-inducible transcription factor; KIRC, kidney renal clear cell carcinoma; SNP, single nucleotide polymorphism.
Hif 1β, supplied by Novus Biologicals, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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96
Novus Biologicals abca1
( A ) Expression of Rnf145 was evaluated in the indicated mouse tissues by qPCR. Bars indicate mean ± SD (n = 3) ( B , C ) The indicated ( B ) human and ( C ) mouse cell lines and primary macrophages were cultured in lipoprotein-depletion medium for 16 hours and subsequently treated for 6 hours with 1μM GW3965 (GW). ( D ) THP1 cells were cultured in sterol depletion medium for 16 hrs and then treated with 1μM GW3965 (GW) and 100nM LG100268 (LG) for 6 hrs as indicated. Subsequently, <t>ABCA1</t> and RNF145 expression was determined by qPCR and each bar and error represents the mean fold-change of ligand-treated cells over sterol-depleted cells ± SD (n≥3).
Abca1, supplied by Novus Biologicals, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
Novus Biologicals rcor2
( a ) X-gal staining to detect <t>Rcor2</t> expression patterns. Whole-embryo staining at E11.5 stage shows Rcor2 is mainly expressed in the CNS. Scale bar, 1 mm. ( b ) Western blot analysis of Rcor2 expression levels during brain development. The decreased expression of Rcor2 with embryonic development is noteworthy. β-Actin is used as an endogenous control. ( c ) In situ hybridization to detect endogenous Rcor2 mRNA expression patterns in cortical development at E11.5, E13.5, E15.5 and E17.5. Insets show high-magnification image of Rcor2 expression in the neocortex at E13.5. VZ, ventricular zone; SVZ, subventricular zone; CP, cortical plate. Scale bar, 100 μm. ( d ) Confocal images of immunofluorescence to detect cellular localization of Rcor2 in the neocortex at E13.5. Rcor2 localized mainly in the nucleus at interphase and metaphase, and localized between separated chromosomes in anaphase of dividing cells in VZ. Dotted lines circle the shape of nuclei. Scale bar, 5 μm. ( e ) Western blot analysis of Rcor2 expression level in Rcor2 fl/fl and Rcor2 cko brains at E13.5 and E15.5, respectively. Rcor2 expression was depleted in Rcor2 cko brains. β-Actin is used as an endogenous control. ( f ) Representative images of Rcor2 fl/fl and Rcor2 cko brain size at different stages of development. Rcor2 cko mice show severe brain growth retardation at E13.5 and E15.5. Scale bar, 1 mm. ( g ) Representative images of Rcor2 fl/fl and Rcor2 cko cortex at E15.5 by Nissl staining. Structural abnormalities of lamination with reduced cortical thickness are observed in Rcor2 cko cortex. Scale bar, 200 μm. ( h ) RT–qPCR analysis of knockdown efficiencies of the two shRNAs targeting Rcor2. Transcripts were normalized to the control group. Data are shown as mean±s.e.m., t -test, **** P <0.0001, n =3. ( i ) Confocal images of E16.5 cortical sections electroporated with shControl (red), shRcor2-a (red) and shRcor2-b (red) plasmids at E13.5. Knockdown of Rcor2 results in impaired cortical development. IZ, intermediate zone. Scale bar, 20 μm. ( j ) Quantification of the percentage of RFP + cells in different regions of the developing neocortex after electroporation as shown in i . proportion of RFP + cells in different zones ( y axis). Data are shown as mean±s.e.m., t -test, * P <0.05, ** P <0.01, *** P <0.001 and **** P <0.0001, n =3 individual experiments.
Rcor2, supplied by Novus Biologicals, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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93
Novus Biologicals nbp2 59199 histone h3 chip novus biologicals
( a ) X-gal staining to detect <t>Rcor2</t> expression patterns. Whole-embryo staining at E11.5 stage shows Rcor2 is mainly expressed in the CNS. Scale bar, 1 mm. ( b ) Western blot analysis of Rcor2 expression levels during brain development. The decreased expression of Rcor2 with embryonic development is noteworthy. β-Actin is used as an endogenous control. ( c ) In situ hybridization to detect endogenous Rcor2 mRNA expression patterns in cortical development at E11.5, E13.5, E15.5 and E17.5. Insets show high-magnification image of Rcor2 expression in the neocortex at E13.5. VZ, ventricular zone; SVZ, subventricular zone; CP, cortical plate. Scale bar, 100 μm. ( d ) Confocal images of immunofluorescence to detect cellular localization of Rcor2 in the neocortex at E13.5. Rcor2 localized mainly in the nucleus at interphase and metaphase, and localized between separated chromosomes in anaphase of dividing cells in VZ. Dotted lines circle the shape of nuclei. Scale bar, 5 μm. ( e ) Western blot analysis of Rcor2 expression level in Rcor2 fl/fl and Rcor2 cko brains at E13.5 and E15.5, respectively. Rcor2 expression was depleted in Rcor2 cko brains. β-Actin is used as an endogenous control. ( f ) Representative images of Rcor2 fl/fl and Rcor2 cko brain size at different stages of development. Rcor2 cko mice show severe brain growth retardation at E13.5 and E15.5. Scale bar, 1 mm. ( g ) Representative images of Rcor2 fl/fl and Rcor2 cko cortex at E15.5 by Nissl staining. Structural abnormalities of lamination with reduced cortical thickness are observed in Rcor2 cko cortex. Scale bar, 200 μm. ( h ) RT–qPCR analysis of knockdown efficiencies of the two shRNAs targeting Rcor2. Transcripts were normalized to the control group. Data are shown as mean±s.e.m., t -test, **** P <0.0001, n =3. ( i ) Confocal images of E16.5 cortical sections electroporated with shControl (red), shRcor2-a (red) and shRcor2-b (red) plasmids at E13.5. Knockdown of Rcor2 results in impaired cortical development. IZ, intermediate zone. Scale bar, 20 μm. ( j ) Quantification of the percentage of RFP + cells in different regions of the developing neocortex after electroporation as shown in i . proportion of RFP + cells in different zones ( y axis). Data are shown as mean±s.e.m., t -test, * P <0.05, ** P <0.01, *** P <0.001 and **** P <0.0001, n =3 individual experiments.
Nbp2 59199 Histone H3 Chip Novus Biologicals, supplied by Novus Biologicals, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/rfid+chip+numbering+system+biolog+id+tiny/Histone+H3+%5BTrimethyl+Lys36%5D+Antibody/pm38517892-173-222-226
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BioMimetic Therapeutics biomimetic chip device
( a ) X-gal staining to detect <t>Rcor2</t> expression patterns. Whole-embryo staining at E11.5 stage shows Rcor2 is mainly expressed in the CNS. Scale bar, 1 mm. ( b ) Western blot analysis of Rcor2 expression levels during brain development. The decreased expression of Rcor2 with embryonic development is noteworthy. β-Actin is used as an endogenous control. ( c ) In situ hybridization to detect endogenous Rcor2 mRNA expression patterns in cortical development at E11.5, E13.5, E15.5 and E17.5. Insets show high-magnification image of Rcor2 expression in the neocortex at E13.5. VZ, ventricular zone; SVZ, subventricular zone; CP, cortical plate. Scale bar, 100 μm. ( d ) Confocal images of immunofluorescence to detect cellular localization of Rcor2 in the neocortex at E13.5. Rcor2 localized mainly in the nucleus at interphase and metaphase, and localized between separated chromosomes in anaphase of dividing cells in VZ. Dotted lines circle the shape of nuclei. Scale bar, 5 μm. ( e ) Western blot analysis of Rcor2 expression level in Rcor2 fl/fl and Rcor2 cko brains at E13.5 and E15.5, respectively. Rcor2 expression was depleted in Rcor2 cko brains. β-Actin is used as an endogenous control. ( f ) Representative images of Rcor2 fl/fl and Rcor2 cko brain size at different stages of development. Rcor2 cko mice show severe brain growth retardation at E13.5 and E15.5. Scale bar, 1 mm. ( g ) Representative images of Rcor2 fl/fl and Rcor2 cko cortex at E15.5 by Nissl staining. Structural abnormalities of lamination with reduced cortical thickness are observed in Rcor2 cko cortex. Scale bar, 200 μm. ( h ) RT–qPCR analysis of knockdown efficiencies of the two shRNAs targeting Rcor2. Transcripts were normalized to the control group. Data are shown as mean±s.e.m., t -test, **** P <0.0001, n =3. ( i ) Confocal images of E16.5 cortical sections electroporated with shControl (red), shRcor2-a (red) and shRcor2-b (red) plasmids at E13.5. Knockdown of Rcor2 results in impaired cortical development. IZ, intermediate zone. Scale bar, 20 μm. ( j ) Quantification of the percentage of RFP + cells in different regions of the developing neocortex after electroporation as shown in i . proportion of RFP + cells in different zones ( y axis). Data are shown as mean±s.e.m., t -test, * P <0.05, ** P <0.01, *** P <0.001 and **** P <0.0001, n =3 individual experiments.
Biomimetic Chip Device, supplied by BioMimetic Therapeutics, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
Biological Dynamics Inc ace chips
( a ) X-gal staining to detect <t>Rcor2</t> expression patterns. Whole-embryo staining at E11.5 stage shows Rcor2 is mainly expressed in the CNS. Scale bar, 1 mm. ( b ) Western blot analysis of Rcor2 expression levels during brain development. The decreased expression of Rcor2 with embryonic development is noteworthy. β-Actin is used as an endogenous control. ( c ) In situ hybridization to detect endogenous Rcor2 mRNA expression patterns in cortical development at E11.5, E13.5, E15.5 and E17.5. Insets show high-magnification image of Rcor2 expression in the neocortex at E13.5. VZ, ventricular zone; SVZ, subventricular zone; CP, cortical plate. Scale bar, 100 μm. ( d ) Confocal images of immunofluorescence to detect cellular localization of Rcor2 in the neocortex at E13.5. Rcor2 localized mainly in the nucleus at interphase and metaphase, and localized between separated chromosomes in anaphase of dividing cells in VZ. Dotted lines circle the shape of nuclei. Scale bar, 5 μm. ( e ) Western blot analysis of Rcor2 expression level in Rcor2 fl/fl and Rcor2 cko brains at E13.5 and E15.5, respectively. Rcor2 expression was depleted in Rcor2 cko brains. β-Actin is used as an endogenous control. ( f ) Representative images of Rcor2 fl/fl and Rcor2 cko brain size at different stages of development. Rcor2 cko mice show severe brain growth retardation at E13.5 and E15.5. Scale bar, 1 mm. ( g ) Representative images of Rcor2 fl/fl and Rcor2 cko cortex at E15.5 by Nissl staining. Structural abnormalities of lamination with reduced cortical thickness are observed in Rcor2 cko cortex. Scale bar, 200 μm. ( h ) RT–qPCR analysis of knockdown efficiencies of the two shRNAs targeting Rcor2. Transcripts were normalized to the control group. Data are shown as mean±s.e.m., t -test, **** P <0.0001, n =3. ( i ) Confocal images of E16.5 cortical sections electroporated with shControl (red), shRcor2-a (red) and shRcor2-b (red) plasmids at E13.5. Knockdown of Rcor2 results in impaired cortical development. IZ, intermediate zone. Scale bar, 20 μm. ( j ) Quantification of the percentage of RFP + cells in different regions of the developing neocortex after electroporation as shown in i . proportion of RFP + cells in different zones ( y axis). Data are shown as mean±s.e.m., t -test, * P <0.05, ** P <0.01, *** P <0.001 and **** P <0.0001, n =3 individual experiments.
Ace Chips, supplied by Biological Dynamics Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
CH Instruments electrochemical workstation chi 660e
Schematics (not to scale) of ( a ) an <t>electrochemical</t> cell and a shadowgraphy system; ( b ) an H 2 bubble residing atop a carpet of microbubbles, generated between its bottom and the electrode surface, as shown by the red rectangle in ( a ). An inset zooms into the bottom of the bubble, marked by a black rectangle, where an intensive bubble-carpet coalescence takes place. The red lines represent the distribution of the current density ( j ), and the black streamlines on the right represent the Marangoni convection with velocity v . The panels ( a ) and ( b ) are adapted from Ref. ; ( c ) PTV optics used to measure the velocity of injected droplets inside the H 2 bubble. The cyan lines indicate the laser rays' path. For details, see text.
Electrochemical Workstation Chi 660e, supplied by CH Instruments, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
Enzo Biochem chip grade antibody ubiquitin
CPI-7c efficiently degrades MDM2 but leads to stabilization of p53 and induces global ubiquitination response. In ( A ), MCF-7 cells were treated with 5, 10, 15 and 20 µM CPI-7c and Nutlin-3, and expression levels of MDM2, <t>ubiquitin</t> and p53 were assessed by using immunoblotting and shown in the image. In panel ( B ), MCF-7 cells were grown in coverslips and treated with either vehicle or 10 and 20 µM of CPI-7c and Nutlin-3, respectively, for 24h and subjected to immunofluorescence staining and analyzed by confocal microscope. Merged confocal photographs represent the superimposition of green (p53) and red (MDM2) images, and the magnified area of the box was shown in inset pictures. Scale bar, 20 µm. Representative of three independent experiments. In panel ( C ), RT–PCR analysis shows the mRNA expression MDM2 and GAPDH genes in response to 10 and 20 µM doses of CPI-7c and Nutlin-3 treatment.
Chip Grade Antibody Ubiquitin, supplied by Enzo Biochem, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


KEY RESOURCES TABLE

Journal: Molecular cell

Article Title: Xist deletional analysis reveals a co-dependency between Xist RNA and Polycomb complexes for spreading along the inactive X

doi: 10.1016/j.molcel.2019.01.015

Figure Lengend Snippet: KEY RESOURCES TABLE

Article Snippet: Input and ChIP-seq libraries were prepared in two biological replicates using NEBNext ChIP-seq Library Prep Master Mix Set for Illumina (New England BioLabs) as per manufacturer’s instructions.

Techniques: Recombinant, Isolation, Multiplex Assay, Transfection, In Situ, Transgenic Assay, Mutagenesis, Southern Blot, Expressing, Plasmid Preparation, In Vitro, Software

TET3 affects DNA methylation and histone modifications of the MED12, TGFBR2, and TSP1 promoters. a UtLM cells were transfected with siCon or siTET3 for 48 h, followed by ChIP-qPCR analysis. Data are presented as mean relative TET3 enrichment over input. n = 3. Red numbers indicate nucleotide positions relative to the transcriptional start sites, with PCR products depicted as red-stripped bars. b Sequences of critical transcription regulatory regions (CTRR) of MED12 , TGFBR2 , and TSP1 . The differentially methylated cytosine residues are marked in red. The red numbers mark the positions of the indicated nucleotides relative to the transcriptional start sites. c UtLM cells were transfected with siCon or siTET3 for 48 h, followed by QMSP analysis. n = 3. d UtLM cells were transfected with siCon or siTET3 for 48 h, followed by ChIP-qPCR analysis. Data are presented as mean relative enrichment over input. n = 3. All data are representative of at least two independent experiments and are presented as mean ± SEM. * p < 0.05, ** p < 0.01

Journal: Oncogene

Article Title: H19 lncRNA identified as a master regulator of genes that drive uterine leiomyomas

doi: 10.1038/s41388-019-0808-4

Figure Lengend Snippet: TET3 affects DNA methylation and histone modifications of the MED12, TGFBR2, and TSP1 promoters. a UtLM cells were transfected with siCon or siTET3 for 48 h, followed by ChIP-qPCR analysis. Data are presented as mean relative TET3 enrichment over input. n = 3. Red numbers indicate nucleotide positions relative to the transcriptional start sites, with PCR products depicted as red-stripped bars. b Sequences of critical transcription regulatory regions (CTRR) of MED12 , TGFBR2 , and TSP1 . The differentially methylated cytosine residues are marked in red. The red numbers mark the positions of the indicated nucleotides relative to the transcriptional start sites. c UtLM cells were transfected with siCon or siTET3 for 48 h, followed by QMSP analysis. n = 3. d UtLM cells were transfected with siCon or siTET3 for 48 h, followed by ChIP-qPCR analysis. Data are presented as mean relative enrichment over input. n = 3. All data are representative of at least two independent experiments and are presented as mean ± SEM. * p < 0.05, ** p < 0.01

Article Snippet: Antibodies for TET3 (GeneTex, GTX121453; used at a dilution of 1/500), TGFBR2 (Abcam, ab184948; used at a dilution of 1/1000), TSP1 (Abcam, ab85762; used at a dilution of 1/500), MED12 (Novus Biological, NB100–2357; used at a dilution of 1/500), HMGA2 (Proteintech, 20795–1-AP; used at a dilution of 1/500), GRAF1 (Cell Signaling, 8802; used at a dilution of 1/500), SPARC (Cell Signaling, 8725; used at a dilution of 1/500), COL3A1 (LS-Bio, LS-C159386; used at a dilution of 1/1000), COL4A1 (LS-Bio, LS-C100552; used at a dilution of 1/500), COL5A2 (Origene, TA809611; used at a dilution of 1/500), and GAPDH (Abcam, ab128915; used at a dilution of 1/10000) were purchased.

Techniques: DNA Methylation Assay, Transfection, ChIP-qPCR, Methylation

H19 and TET3 co-express with fibroid-promoting genes in vivo. a , c RT-qPCR analyses were performed on RNAs extracted from human fibroids and matched myometrium tissues. Spearman’s correlation showed positive correlations between expression of H19 and TET3 ( a , left panel), as well as TET3 and its target genes MED12 , TGFBR2 , and TSP1 ( c ) in a statistically significant manner. No correlation between expression of H19 and HMGA2 at the RNA level was detected ( a , right panel). Spearman’s correlation coefficient, p -values, and sample numbers are presented. b Results of western blotting analysis of HMGA2 in human fibroids and matched myometrium. n = 3. Data are representative of two independent experiments and are presented as mean ± SEM

Journal: Oncogene

Article Title: H19 lncRNA identified as a master regulator of genes that drive uterine leiomyomas

doi: 10.1038/s41388-019-0808-4

Figure Lengend Snippet: H19 and TET3 co-express with fibroid-promoting genes in vivo. a , c RT-qPCR analyses were performed on RNAs extracted from human fibroids and matched myometrium tissues. Spearman’s correlation showed positive correlations between expression of H19 and TET3 ( a , left panel), as well as TET3 and its target genes MED12 , TGFBR2 , and TSP1 ( c ) in a statistically significant manner. No correlation between expression of H19 and HMGA2 at the RNA level was detected ( a , right panel). Spearman’s correlation coefficient, p -values, and sample numbers are presented. b Results of western blotting analysis of HMGA2 in human fibroids and matched myometrium. n = 3. Data are representative of two independent experiments and are presented as mean ± SEM

Article Snippet: Antibodies for TET3 (GeneTex, GTX121453; used at a dilution of 1/500), TGFBR2 (Abcam, ab184948; used at a dilution of 1/1000), TSP1 (Abcam, ab85762; used at a dilution of 1/500), MED12 (Novus Biological, NB100–2357; used at a dilution of 1/500), HMGA2 (Proteintech, 20795–1-AP; used at a dilution of 1/500), GRAF1 (Cell Signaling, 8802; used at a dilution of 1/500), SPARC (Cell Signaling, 8725; used at a dilution of 1/500), COL3A1 (LS-Bio, LS-C159386; used at a dilution of 1/1000), COL4A1 (LS-Bio, LS-C100552; used at a dilution of 1/500), COL5A2 (Origene, TA809611; used at a dilution of 1/500), and GAPDH (Abcam, ab128915; used at a dilution of 1/10000) were purchased.

Techniques: In Vivo, Quantitative RT-PCR, Expressing, Western Blot

rs4903064 resides in a renal cancer–associated regulatory element. A , ATAC-seq tracks from primary renal cancer cells at the DPF3 locus. The top track indicates SNPs in high LD with rs4903064 (r 2 > 0.8). ATAC-seq was performed in cells from three individuals with different rs4903064 genotypes (TT, CT, CC). KIRC RE indicates r egulatory e lements defined by ATAC-seq in ccRCC TCGA samples. B , zoomed in view of ( A ). SNP rs4903064 resides in open chromatin and in KIRC_67261. Please note that open chromatin is only detected in cells carrying the risk allele C. C , sequences of the two alleles at rs4903064. The risk allele C creates a putative hypoxia-responsive element (HRE). D , allele-specific qPCR assay for rs4903064 indicates a shift toward the risk allele C in DNA fragments captured by ATAC experiments in tumor cells ( red triangle ) or tubular cells exposed to 1 mM DMOG ( orange triangle ) when compared to input DNA or DNA from ATAC experiments in untreated tubular cells. Cells were isolated from an individual heterozygous for rs4903064. E , allelic ratio of rs4903064 in ATAC samples from tubular cells isolated from three individuals heterozygous for the SNP performed in triplicates. Cells were exposed to 1 mM DMOG for 16 h or left untreated. Bars indicate mean values ± SD. t test, ∗∗∗∗ p < 0.0001. F , allelic ratio of rs4903064 in FAIRE samples from cells of four heterozygous individuals. Cells were exposed to 1 mM DMOG for 16 h, and values were normalized to corresponding input DNA. The mean value for each individual is shown. Bars indicate mean values ± SD. ∗one sample t test, p < 0.05. G , reporter assay in HeLa cells using the pGL3 promoter vector with or without a 415 bp sequence covering the protective or the risk allele of rs4903064. Cells were treated with 1 mM DMOG for 16 h as indicated. Bars indicate mean values ± SD of one experiment performed in triplicates. H , HeLa cells were depleted for the indicated HIF-α isoforms using siRNA and transfected with the reporter plasmid including the risk allele. Cells were exposed to 1 mM DMOG for 16 h. Reporter activity was normalized to the activity of co-transfected β-galactosidase. Bars indicate mean values ± SD of one experiment performed in triplicates. I and J , DPF3 protein levels are high in HIF-positive ccRCC tumors. A total of 330 ccRCC tumors were stratified according to the immunoreactive score for HIF-1α, HIF-2α, and DPF3 staining in no, low, medium, or strong staining. Fractions of DPF3 signals are shown for each subgroup of HIF staining. Pearson χ 2 -test; p = 1.8 × 10 −8 for HIF-1α ( I ) and p = 0.003 for HIF-2α ( J ). ATAC, Assay for Transposase-Accessible Chromatin; ccRCC, clear cell renal cell carcinoma; DMOG, dimethyloxalylglycine; DPF3, double PHD fingers 3; FAIRE, formaldehyde-assisted isolation of regulatory elements; HIF, hypoxia-inducible transcription factor; KIRC, kidney renal clear cell carcinoma; SNP, single nucleotide polymorphism.

Journal: The Journal of Biological Chemistry

Article Title: The renal cancer risk allele at 14q24.2 activates a novel hypoxia-inducible transcription factor-binding enhancer of DPF3 expression

doi: 10.1016/j.jbc.2022.101699

Figure Lengend Snippet: rs4903064 resides in a renal cancer–associated regulatory element. A , ATAC-seq tracks from primary renal cancer cells at the DPF3 locus. The top track indicates SNPs in high LD with rs4903064 (r 2 > 0.8). ATAC-seq was performed in cells from three individuals with different rs4903064 genotypes (TT, CT, CC). KIRC RE indicates r egulatory e lements defined by ATAC-seq in ccRCC TCGA samples. B , zoomed in view of ( A ). SNP rs4903064 resides in open chromatin and in KIRC_67261. Please note that open chromatin is only detected in cells carrying the risk allele C. C , sequences of the two alleles at rs4903064. The risk allele C creates a putative hypoxia-responsive element (HRE). D , allele-specific qPCR assay for rs4903064 indicates a shift toward the risk allele C in DNA fragments captured by ATAC experiments in tumor cells ( red triangle ) or tubular cells exposed to 1 mM DMOG ( orange triangle ) when compared to input DNA or DNA from ATAC experiments in untreated tubular cells. Cells were isolated from an individual heterozygous for rs4903064. E , allelic ratio of rs4903064 in ATAC samples from tubular cells isolated from three individuals heterozygous for the SNP performed in triplicates. Cells were exposed to 1 mM DMOG for 16 h or left untreated. Bars indicate mean values ± SD. t test, ∗∗∗∗ p < 0.0001. F , allelic ratio of rs4903064 in FAIRE samples from cells of four heterozygous individuals. Cells were exposed to 1 mM DMOG for 16 h, and values were normalized to corresponding input DNA. The mean value for each individual is shown. Bars indicate mean values ± SD. ∗one sample t test, p < 0.05. G , reporter assay in HeLa cells using the pGL3 promoter vector with or without a 415 bp sequence covering the protective or the risk allele of rs4903064. Cells were treated with 1 mM DMOG for 16 h as indicated. Bars indicate mean values ± SD of one experiment performed in triplicates. H , HeLa cells were depleted for the indicated HIF-α isoforms using siRNA and transfected with the reporter plasmid including the risk allele. Cells were exposed to 1 mM DMOG for 16 h. Reporter activity was normalized to the activity of co-transfected β-galactosidase. Bars indicate mean values ± SD of one experiment performed in triplicates. I and J , DPF3 protein levels are high in HIF-positive ccRCC tumors. A total of 330 ccRCC tumors were stratified according to the immunoreactive score for HIF-1α, HIF-2α, and DPF3 staining in no, low, medium, or strong staining. Fractions of DPF3 signals are shown for each subgroup of HIF staining. Pearson χ 2 -test; p = 1.8 × 10 −8 for HIF-1α ( I ) and p = 0.003 for HIF-2α ( J ). ATAC, Assay for Transposase-Accessible Chromatin; ccRCC, clear cell renal cell carcinoma; DMOG, dimethyloxalylglycine; DPF3, double PHD fingers 3; FAIRE, formaldehyde-assisted isolation of regulatory elements; HIF, hypoxia-inducible transcription factor; KIRC, kidney renal clear cell carcinoma; SNP, single nucleotide polymorphism.

Article Snippet: ChIP experiments were performed as previously described using antibodies directed against HIF-1α (Cay10006421, rabbit polyclonal, Cayman Chemicals), HIF-1β (NB100–110, rabbit polyclonal, Novus Biologicals), RNApol 2 (SC-899, rabbit polyclonal, Santa Cruz), or H3K27ac (ab4729, rabbit polyclonal, Abcam) ( , ).

Techniques: Isolation, Reporter Assay, Plasmid Preparation, Sequencing, Transfection, Activity Assay, Staining

HIF binding to the RCC risk allele. A , HIF ChIP qPCR results for the DPF3 locus. Experiments were performed from cells isolated from 11 TT, 11 CT, and 1 CC individuals. Bars indicate mean values ± SD. Student’s t test, ∗ p < 0.05, ∗∗ p < 0.01. B , binding of HIF to the control locus at EGLN3 is not affected by the rs4903064 genotype. Bars indicate mean values ± SD. C , HIF ChIP-seq tracks in two different ccRCC cell lines at the rs4903064-associated enhancer (TT: RCC4 and CC: individual 40,911,432 from Yao et al. ). HIF binding is only detectable in cells from a patient carrying the C allele ( red , HIF-1α: 12 × C from 12 reads in total, HIF-2α 99 × C from 99 reads in total). D , same tracks as in ( C ) covering the EGLN3 control locus. E and F , H3K27ac ChIP-seq tracks from corresponding normal ( blue ) and ccRCC ( red ) tissue indicates increased activity of the disease-associated regulatory element at DPF3 ( E , highlighted in yellow ) and of the EGLN3 locus ( F ) in tumors. G , H3K27ac ChIP-seq tracks for two different ccRCC cell lines at the rs4903064-associated enhancer (TT: 786-O and CC: individual 40,911,432 from Yao et al. ). Levels of the active enhancer mark H3K27ac are high in the individual carrying the C allele and reduced upon VHL re-expression. H , same tracks as in ( G ) covering the EGLN3 control locus. Note that H3K27ac levels are reduced upon VHL re-expression in both cell lines. ccRCC, clear cell renal cell carcinoma; ChIP, chromatin immunoprecipitation; DPF3, double PHD fingers 3; EGLN3, Egl-9 family hypoxia inducible factor 3; HIF, hypoxia-inducible transcription factor; KIRC, kidney renal clear cell carcinoma; SNP, single nucleotide polymorphism; VHL, von Hippel-Lindau.

Journal: The Journal of Biological Chemistry

Article Title: The renal cancer risk allele at 14q24.2 activates a novel hypoxia-inducible transcription factor-binding enhancer of DPF3 expression

doi: 10.1016/j.jbc.2022.101699

Figure Lengend Snippet: HIF binding to the RCC risk allele. A , HIF ChIP qPCR results for the DPF3 locus. Experiments were performed from cells isolated from 11 TT, 11 CT, and 1 CC individuals. Bars indicate mean values ± SD. Student’s t test, ∗ p < 0.05, ∗∗ p < 0.01. B , binding of HIF to the control locus at EGLN3 is not affected by the rs4903064 genotype. Bars indicate mean values ± SD. C , HIF ChIP-seq tracks in two different ccRCC cell lines at the rs4903064-associated enhancer (TT: RCC4 and CC: individual 40,911,432 from Yao et al. ). HIF binding is only detectable in cells from a patient carrying the C allele ( red , HIF-1α: 12 × C from 12 reads in total, HIF-2α 99 × C from 99 reads in total). D , same tracks as in ( C ) covering the EGLN3 control locus. E and F , H3K27ac ChIP-seq tracks from corresponding normal ( blue ) and ccRCC ( red ) tissue indicates increased activity of the disease-associated regulatory element at DPF3 ( E , highlighted in yellow ) and of the EGLN3 locus ( F ) in tumors. G , H3K27ac ChIP-seq tracks for two different ccRCC cell lines at the rs4903064-associated enhancer (TT: 786-O and CC: individual 40,911,432 from Yao et al. ). Levels of the active enhancer mark H3K27ac are high in the individual carrying the C allele and reduced upon VHL re-expression. H , same tracks as in ( G ) covering the EGLN3 control locus. Note that H3K27ac levels are reduced upon VHL re-expression in both cell lines. ccRCC, clear cell renal cell carcinoma; ChIP, chromatin immunoprecipitation; DPF3, double PHD fingers 3; EGLN3, Egl-9 family hypoxia inducible factor 3; HIF, hypoxia-inducible transcription factor; KIRC, kidney renal clear cell carcinoma; SNP, single nucleotide polymorphism; VHL, von Hippel-Lindau.

Article Snippet: ChIP experiments were performed as previously described using antibodies directed against HIF-1α (Cay10006421, rabbit polyclonal, Cayman Chemicals), HIF-1β (NB100–110, rabbit polyclonal, Novus Biologicals), RNApol 2 (SC-899, rabbit polyclonal, Santa Cruz), or H3K27ac (ab4729, rabbit polyclonal, Abcam) ( , ).

Techniques: Binding Assay, ChIP-qPCR, Isolation, Control, ChIP-sequencing, Activity Assay, Expressing, Chromatin Immunoprecipitation

Allele specific interactions at rs4903064. A – C , allele-specific qPCR on ChIP samples generated from primary tubular cells exposed to 1 mM DMOG for 16 h. A , HIF ChIP indicates enrichment for the C allele in DNA fragments captured with HIF-1α or HIF-1β antibodies. n = 7 individuals. B , H3k27ac as a marker for active chromatin is enriched at the C allele. n = 4 individuals. C , RNApol2 is enriched at the C allele of rs4903064 indicating increased interaction with the transcriptional machinery from this allele. n = 4 individuals. D , quantification of the results in ( A – C ). The allelic ratio is shifted to the risk allele C, which indicated increased interaction with HIF and the transcriptional machinery as well as increased activity of this allele. Values are mean ± SD. One sample t test, ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001. ChIP, chromatin immunoprecipitation; DMOG, dimethyloxalylglycine; HIF, hypoxia-inducible transcription factor.

Journal: The Journal of Biological Chemistry

Article Title: The renal cancer risk allele at 14q24.2 activates a novel hypoxia-inducible transcription factor-binding enhancer of DPF3 expression

doi: 10.1016/j.jbc.2022.101699

Figure Lengend Snippet: Allele specific interactions at rs4903064. A – C , allele-specific qPCR on ChIP samples generated from primary tubular cells exposed to 1 mM DMOG for 16 h. A , HIF ChIP indicates enrichment for the C allele in DNA fragments captured with HIF-1α or HIF-1β antibodies. n = 7 individuals. B , H3k27ac as a marker for active chromatin is enriched at the C allele. n = 4 individuals. C , RNApol2 is enriched at the C allele of rs4903064 indicating increased interaction with the transcriptional machinery from this allele. n = 4 individuals. D , quantification of the results in ( A – C ). The allelic ratio is shifted to the risk allele C, which indicated increased interaction with HIF and the transcriptional machinery as well as increased activity of this allele. Values are mean ± SD. One sample t test, ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001. ChIP, chromatin immunoprecipitation; DMOG, dimethyloxalylglycine; HIF, hypoxia-inducible transcription factor.

Article Snippet: ChIP experiments were performed as previously described using antibodies directed against HIF-1α (Cay10006421, rabbit polyclonal, Cayman Chemicals), HIF-1β (NB100–110, rabbit polyclonal, Novus Biologicals), RNApol 2 (SC-899, rabbit polyclonal, Santa Cruz), or H3K27ac (ab4729, rabbit polyclonal, Abcam) ( , ).

Techniques: Generated, Marker, Activity Assay, Chromatin Immunoprecipitation

Regulation of DPF3 expression and effect of DPF3 on tubular cell growth. A , relative expression levels of DPF3 in primary renal tubular cells exposed to 1 mM of DMOG for 16 h. Samples were stratified according to the rs4903064 genotype (TT = 42, CT/CC = 44). Values were normalized to expression levels of the housekeeping gene HPRT and to values from corresponding untreated cells. Each dot represents the mean value from cells of one individual. qPCR was performed in duplicates per individual. Bars indicate mean values ± SD. Student’s t test, ∗∗∗∗ p < 0.0001. B , DPF3 expression levels in isolated tumor cells compared to corresponding untreated tubular cells from 8 (TT) and 14 (CT/CC) individuals, respectively. Bars indicate mean values ± SD. One sample t test, ∗ p < 0.05. C , top , allelic ratios of rs4903064 in cells from heterozygous individuals exposed to DMOG 1 mM or left untreated. One sample t test, ∗∗∗ p < 0.001. Bottom , allelic ratios of rs4903064 in ccRCC cells with high (CA9+) or low (CA9−) CA9 expression as a marker for HIF-1α activity. Values are mean from technical triplicates, and each dot represents values derived from one individual. Bars indicate mean values ± SD. t test, ∗ p < 0.05. D , Western blot for DPF3 and beta actin from lysates of different clones of HKC-8 cells with or without defective DPF3. E , Western blot for DPF3 and beta actin from lysates of two different huPTC lines transfected either with nontargeting (nt) guides or guides targeting DPF3. F , proliferation assays of the clones of cells indicated in ( D ). Dark lines and dots indicate the mean value from the three different clones of cells, which were tested in biological triplicates. Light gray and light blue lines indicate individual values for the three different clones of cells. G , proliferation assay from cells indicated in ( E ). H , Western blot for DPF3 and beta actin from lysates of primary renal tubular cells (PTC) transfected either with nontargeting (nt) guides or guides targeting DPF3. Cells were harvested at day 3 after transfection. I , cyst volume of PTC 7 days after plating in a Matrigel matrix (n = 3 wells per condition, 4 quadrants per well). J , representative images of the cysts in the Matrigel matrix. Values are mean ± SD. t test, ∗ p < 0.05, ∗∗ p < 0.01 for F , G , and I . CA9, carbonic anhydrase 9; ccRCC, clear cell renal cell carcinoma; DMOG, dimethyloxalylglycine; DPF3, double PHD fingers 3; huPTC, human urinary primary tubular cells.

Journal: The Journal of Biological Chemistry

Article Title: The renal cancer risk allele at 14q24.2 activates a novel hypoxia-inducible transcription factor-binding enhancer of DPF3 expression

doi: 10.1016/j.jbc.2022.101699

Figure Lengend Snippet: Regulation of DPF3 expression and effect of DPF3 on tubular cell growth. A , relative expression levels of DPF3 in primary renal tubular cells exposed to 1 mM of DMOG for 16 h. Samples were stratified according to the rs4903064 genotype (TT = 42, CT/CC = 44). Values were normalized to expression levels of the housekeeping gene HPRT and to values from corresponding untreated cells. Each dot represents the mean value from cells of one individual. qPCR was performed in duplicates per individual. Bars indicate mean values ± SD. Student’s t test, ∗∗∗∗ p < 0.0001. B , DPF3 expression levels in isolated tumor cells compared to corresponding untreated tubular cells from 8 (TT) and 14 (CT/CC) individuals, respectively. Bars indicate mean values ± SD. One sample t test, ∗ p < 0.05. C , top , allelic ratios of rs4903064 in cells from heterozygous individuals exposed to DMOG 1 mM or left untreated. One sample t test, ∗∗∗ p < 0.001. Bottom , allelic ratios of rs4903064 in ccRCC cells with high (CA9+) or low (CA9−) CA9 expression as a marker for HIF-1α activity. Values are mean from technical triplicates, and each dot represents values derived from one individual. Bars indicate mean values ± SD. t test, ∗ p < 0.05. D , Western blot for DPF3 and beta actin from lysates of different clones of HKC-8 cells with or without defective DPF3. E , Western blot for DPF3 and beta actin from lysates of two different huPTC lines transfected either with nontargeting (nt) guides or guides targeting DPF3. F , proliferation assays of the clones of cells indicated in ( D ). Dark lines and dots indicate the mean value from the three different clones of cells, which were tested in biological triplicates. Light gray and light blue lines indicate individual values for the three different clones of cells. G , proliferation assay from cells indicated in ( E ). H , Western blot for DPF3 and beta actin from lysates of primary renal tubular cells (PTC) transfected either with nontargeting (nt) guides or guides targeting DPF3. Cells were harvested at day 3 after transfection. I , cyst volume of PTC 7 days after plating in a Matrigel matrix (n = 3 wells per condition, 4 quadrants per well). J , representative images of the cysts in the Matrigel matrix. Values are mean ± SD. t test, ∗ p < 0.05, ∗∗ p < 0.01 for F , G , and I . CA9, carbonic anhydrase 9; ccRCC, clear cell renal cell carcinoma; DMOG, dimethyloxalylglycine; DPF3, double PHD fingers 3; huPTC, human urinary primary tubular cells.

Article Snippet: ChIP experiments were performed as previously described using antibodies directed against HIF-1α (Cay10006421, rabbit polyclonal, Cayman Chemicals), HIF-1β (NB100–110, rabbit polyclonal, Novus Biologicals), RNApol 2 (SC-899, rabbit polyclonal, Santa Cruz), or H3K27ac (ab4729, rabbit polyclonal, Abcam) ( , ).

Techniques: Expressing, Isolation, Marker, Activity Assay, Derivative Assay, Western Blot, Clone Assay, Transfection, Proliferation Assay

( A ) Expression of Rnf145 was evaluated in the indicated mouse tissues by qPCR. Bars indicate mean ± SD (n = 3) ( B , C ) The indicated ( B ) human and ( C ) mouse cell lines and primary macrophages were cultured in lipoprotein-depletion medium for 16 hours and subsequently treated for 6 hours with 1μM GW3965 (GW). ( D ) THP1 cells were cultured in sterol depletion medium for 16 hrs and then treated with 1μM GW3965 (GW) and 100nM LG100268 (LG) for 6 hrs as indicated. Subsequently, ABCA1 and RNF145 expression was determined by qPCR and each bar and error represents the mean fold-change of ligand-treated cells over sterol-depleted cells ± SD (n≥3).

Journal: PLoS ONE

Article Title: Identification of the ER-resident E3 ubiquitin ligase RNF145 as a novel LXR-regulated gene

doi: 10.1371/journal.pone.0172721

Figure Lengend Snippet: ( A ) Expression of Rnf145 was evaluated in the indicated mouse tissues by qPCR. Bars indicate mean ± SD (n = 3) ( B , C ) The indicated ( B ) human and ( C ) mouse cell lines and primary macrophages were cultured in lipoprotein-depletion medium for 16 hours and subsequently treated for 6 hours with 1μM GW3965 (GW). ( D ) THP1 cells were cultured in sterol depletion medium for 16 hrs and then treated with 1μM GW3965 (GW) and 100nM LG100268 (LG) for 6 hrs as indicated. Subsequently, ABCA1 and RNF145 expression was determined by qPCR and each bar and error represents the mean fold-change of ligand-treated cells over sterol-depleted cells ± SD (n≥3).

Article Snippet: Membranes were probed with the following antibodies: LDLR (Abcam, clone EP1553Y, 1:4000), tubulin (Sigma, clone DM1A, ascites fluid, 1:5000), ABCA1 (Novus Biologicals, NB400-105, 1:1000), FLAG (Sigma, clone M2, 1:1000), GFP (Santa Cruz sc-9996, 1:500), Myc (Santa Cruz 9E10, 1:3000), HA (Covance, clone 16B12, ascites fluid, 1:6000), HMGCR (rabbit polyserum was a kind gift from Dr. Peter Edwards, UCLA), SREBP2 (BD Biosciences, clone 1C6, 1:1000), SREBP1 (ThermoFisher, clone 2A4, 1:1000), actin (Merck Millipore, clone C4, 1:5000), V5 (Invitrogen, 46–0705, 1:3000), RNF145 (Abgent AP18281b, 1:8000), and ubiquitin (Enzo life Sciences, clone FK2, 1:1000).

Techniques: Expressing, Cell Culture

( A ) RAW264.7 macrophages were treated with 5μg/mL Actinomycin D (ActD) for the indicated time and expression of Abca1 and Rnf145 was determined by qPCR and plotted as mean ± SD relative to untreated cells (n = 3), ( B ) HepG2 and RAW264.7 cells were treated with 1μM GW3965 for 6 hours in the presence or absence of 5μg/ml actinomycinD for 4 hours, after which expression of the indicated genes was measured by qPCR. Bars indicate mean ± SD (n = 3) ( C , D ) THP1 macrophages were cultured in sterol-depletion medium for 16 hrs and then treated with ( C ) 1μM GW3965 (GW) for the indicated time, or ( D ) with the indicated concentration of GW3965 for 4 hrs. Subsequently, gene expression was evaluated qPCR and bars indicate mean ± SD (n = 3)

Journal: PLoS ONE

Article Title: Identification of the ER-resident E3 ubiquitin ligase RNF145 as a novel LXR-regulated gene

doi: 10.1371/journal.pone.0172721

Figure Lengend Snippet: ( A ) RAW264.7 macrophages were treated with 5μg/mL Actinomycin D (ActD) for the indicated time and expression of Abca1 and Rnf145 was determined by qPCR and plotted as mean ± SD relative to untreated cells (n = 3), ( B ) HepG2 and RAW264.7 cells were treated with 1μM GW3965 for 6 hours in the presence or absence of 5μg/ml actinomycinD for 4 hours, after which expression of the indicated genes was measured by qPCR. Bars indicate mean ± SD (n = 3) ( C , D ) THP1 macrophages were cultured in sterol-depletion medium for 16 hrs and then treated with ( C ) 1μM GW3965 (GW) for the indicated time, or ( D ) with the indicated concentration of GW3965 for 4 hrs. Subsequently, gene expression was evaluated qPCR and bars indicate mean ± SD (n = 3)

Article Snippet: Membranes were probed with the following antibodies: LDLR (Abcam, clone EP1553Y, 1:4000), tubulin (Sigma, clone DM1A, ascites fluid, 1:5000), ABCA1 (Novus Biologicals, NB400-105, 1:1000), FLAG (Sigma, clone M2, 1:1000), GFP (Santa Cruz sc-9996, 1:500), Myc (Santa Cruz 9E10, 1:3000), HA (Covance, clone 16B12, ascites fluid, 1:6000), HMGCR (rabbit polyserum was a kind gift from Dr. Peter Edwards, UCLA), SREBP2 (BD Biosciences, clone 1C6, 1:1000), SREBP1 (ThermoFisher, clone 2A4, 1:1000), actin (Merck Millipore, clone C4, 1:5000), V5 (Invitrogen, 46–0705, 1:3000), RNF145 (Abgent AP18281b, 1:8000), and ubiquitin (Enzo life Sciences, clone FK2, 1:1000).

Techniques: Expressing, Cell Culture, Concentration Assay, Gene Expression

( A ) LXR ChIP-seq experiments in human THP1 cells (GSE28319) and RAW macrophage-like cells (GSE50944) were analyzed and used to identify active LXREs within the Rnf145/Rnf145 loci, as graphically illustrated. ( B , C ) Genomic location of the identified LXREs. In bold, nucleotides that were mutated to disrupt LXR binding ( C ) A 1kb genomic region upstream of the transcriptional start site of hRNF145 was cloned into a pGL3basic. The putative LXRE was also mutated as indicated above. The empty, RNF145 WT , RNF145 MUT , and ABCA1 reporter plasmids were co-transfected with or without RXRα and LXRα expression plasmids in HEK 293T cells. 24 hours post-transfection the cells were treated with 1μM GW3965 (LXR) and 100nM LG100268 (RXR) for 24 hours and measured for luciferase signal (n≥3). ( D ) Cells were transfected with an empty or a tandem LXRE-containing pGL2 as in C . In all luciferase experiments the transfection efficiency was normalized to co-transfected Renilla luciferase. Bars report normalized chemiluminescence relative to untreated control ± SD (n = 3).

Journal: PLoS ONE

Article Title: Identification of the ER-resident E3 ubiquitin ligase RNF145 as a novel LXR-regulated gene

doi: 10.1371/journal.pone.0172721

Figure Lengend Snippet: ( A ) LXR ChIP-seq experiments in human THP1 cells (GSE28319) and RAW macrophage-like cells (GSE50944) were analyzed and used to identify active LXREs within the Rnf145/Rnf145 loci, as graphically illustrated. ( B , C ) Genomic location of the identified LXREs. In bold, nucleotides that were mutated to disrupt LXR binding ( C ) A 1kb genomic region upstream of the transcriptional start site of hRNF145 was cloned into a pGL3basic. The putative LXRE was also mutated as indicated above. The empty, RNF145 WT , RNF145 MUT , and ABCA1 reporter plasmids were co-transfected with or without RXRα and LXRα expression plasmids in HEK 293T cells. 24 hours post-transfection the cells were treated with 1μM GW3965 (LXR) and 100nM LG100268 (RXR) for 24 hours and measured for luciferase signal (n≥3). ( D ) Cells were transfected with an empty or a tandem LXRE-containing pGL2 as in C . In all luciferase experiments the transfection efficiency was normalized to co-transfected Renilla luciferase. Bars report normalized chemiluminescence relative to untreated control ± SD (n = 3).

Article Snippet: Membranes were probed with the following antibodies: LDLR (Abcam, clone EP1553Y, 1:4000), tubulin (Sigma, clone DM1A, ascites fluid, 1:5000), ABCA1 (Novus Biologicals, NB400-105, 1:1000), FLAG (Sigma, clone M2, 1:1000), GFP (Santa Cruz sc-9996, 1:500), Myc (Santa Cruz 9E10, 1:3000), HA (Covance, clone 16B12, ascites fluid, 1:6000), HMGCR (rabbit polyserum was a kind gift from Dr. Peter Edwards, UCLA), SREBP2 (BD Biosciences, clone 1C6, 1:1000), SREBP1 (ThermoFisher, clone 2A4, 1:1000), actin (Merck Millipore, clone C4, 1:5000), V5 (Invitrogen, 46–0705, 1:3000), RNF145 (Abgent AP18281b, 1:8000), and ubiquitin (Enzo life Sciences, clone FK2, 1:1000).

Techniques: ChIP-sequencing, Binding Assay, Clone Assay, Transfection, Expressing, Luciferase, Control

( a ) X-gal staining to detect Rcor2 expression patterns. Whole-embryo staining at E11.5 stage shows Rcor2 is mainly expressed in the CNS. Scale bar, 1 mm. ( b ) Western blot analysis of Rcor2 expression levels during brain development. The decreased expression of Rcor2 with embryonic development is noteworthy. β-Actin is used as an endogenous control. ( c ) In situ hybridization to detect endogenous Rcor2 mRNA expression patterns in cortical development at E11.5, E13.5, E15.5 and E17.5. Insets show high-magnification image of Rcor2 expression in the neocortex at E13.5. VZ, ventricular zone; SVZ, subventricular zone; CP, cortical plate. Scale bar, 100 μm. ( d ) Confocal images of immunofluorescence to detect cellular localization of Rcor2 in the neocortex at E13.5. Rcor2 localized mainly in the nucleus at interphase and metaphase, and localized between separated chromosomes in anaphase of dividing cells in VZ. Dotted lines circle the shape of nuclei. Scale bar, 5 μm. ( e ) Western blot analysis of Rcor2 expression level in Rcor2 fl/fl and Rcor2 cko brains at E13.5 and E15.5, respectively. Rcor2 expression was depleted in Rcor2 cko brains. β-Actin is used as an endogenous control. ( f ) Representative images of Rcor2 fl/fl and Rcor2 cko brain size at different stages of development. Rcor2 cko mice show severe brain growth retardation at E13.5 and E15.5. Scale bar, 1 mm. ( g ) Representative images of Rcor2 fl/fl and Rcor2 cko cortex at E15.5 by Nissl staining. Structural abnormalities of lamination with reduced cortical thickness are observed in Rcor2 cko cortex. Scale bar, 200 μm. ( h ) RT–qPCR analysis of knockdown efficiencies of the two shRNAs targeting Rcor2. Transcripts were normalized to the control group. Data are shown as mean±s.e.m., t -test, **** P <0.0001, n =3. ( i ) Confocal images of E16.5 cortical sections electroporated with shControl (red), shRcor2-a (red) and shRcor2-b (red) plasmids at E13.5. Knockdown of Rcor2 results in impaired cortical development. IZ, intermediate zone. Scale bar, 20 μm. ( j ) Quantification of the percentage of RFP + cells in different regions of the developing neocortex after electroporation as shown in i . proportion of RFP + cells in different zones ( y axis). Data are shown as mean±s.e.m., t -test, * P <0.05, ** P <0.01, *** P <0.001 and **** P <0.0001, n =3 individual experiments.

Journal: Nature Communications

Article Title: LSD1 co-repressor Rcor2 orchestrates neurogenesis in the developing mouse brain

doi: 10.1038/ncomms10481

Figure Lengend Snippet: ( a ) X-gal staining to detect Rcor2 expression patterns. Whole-embryo staining at E11.5 stage shows Rcor2 is mainly expressed in the CNS. Scale bar, 1 mm. ( b ) Western blot analysis of Rcor2 expression levels during brain development. The decreased expression of Rcor2 with embryonic development is noteworthy. β-Actin is used as an endogenous control. ( c ) In situ hybridization to detect endogenous Rcor2 mRNA expression patterns in cortical development at E11.5, E13.5, E15.5 and E17.5. Insets show high-magnification image of Rcor2 expression in the neocortex at E13.5. VZ, ventricular zone; SVZ, subventricular zone; CP, cortical plate. Scale bar, 100 μm. ( d ) Confocal images of immunofluorescence to detect cellular localization of Rcor2 in the neocortex at E13.5. Rcor2 localized mainly in the nucleus at interphase and metaphase, and localized between separated chromosomes in anaphase of dividing cells in VZ. Dotted lines circle the shape of nuclei. Scale bar, 5 μm. ( e ) Western blot analysis of Rcor2 expression level in Rcor2 fl/fl and Rcor2 cko brains at E13.5 and E15.5, respectively. Rcor2 expression was depleted in Rcor2 cko brains. β-Actin is used as an endogenous control. ( f ) Representative images of Rcor2 fl/fl and Rcor2 cko brain size at different stages of development. Rcor2 cko mice show severe brain growth retardation at E13.5 and E15.5. Scale bar, 1 mm. ( g ) Representative images of Rcor2 fl/fl and Rcor2 cko cortex at E15.5 by Nissl staining. Structural abnormalities of lamination with reduced cortical thickness are observed in Rcor2 cko cortex. Scale bar, 200 μm. ( h ) RT–qPCR analysis of knockdown efficiencies of the two shRNAs targeting Rcor2. Transcripts were normalized to the control group. Data are shown as mean±s.e.m., t -test, **** P <0.0001, n =3. ( i ) Confocal images of E16.5 cortical sections electroporated with shControl (red), shRcor2-a (red) and shRcor2-b (red) plasmids at E13.5. Knockdown of Rcor2 results in impaired cortical development. IZ, intermediate zone. Scale bar, 20 μm. ( j ) Quantification of the percentage of RFP + cells in different regions of the developing neocortex after electroporation as shown in i . proportion of RFP + cells in different zones ( y axis). Data are shown as mean±s.e.m., t -test, * P <0.05, ** P <0.01, *** P <0.001 and **** P <0.0001, n =3 individual experiments.

Article Snippet: Primary antibodies used were as follows: Rcor2 (1:50, catalogue number NBP1-74099, Novus Biological); Nes (1:300, catalogue number Rat-401, DSHB); Pax6 (1:100, DSHB); Sox2 (1:500, catalogue number sc-17319, Santa Cruz); BrdU (1:500, catalogue number ab6326, Abcam); Ki67 (1:300, catalogue number ab9260, Millipore); Satb2 (1:500, catalogue number ab34735, Abcam); Olig2 (1:200, catalogue number ab109186, Abcam); Shh (1:100, catalogue number sc-33943, Santa Cruz); Ptch1 (1:100, catalogue number sc-6149, Santa Cruz); Dlx2 (1:500, catalogue number ab117546, Abcam); Nkx2.1 (1:300, catalogue number ab76013, Abcam); Tbr1 (1:500, catalogue number ab31940, Abcam); Dcx (1:500, catalogue number ab18723, Abcam); Tbr2 (1:500, catalogue number ab23345, Abcam); Flag M2 (1:1,000, catalogue number F1804, Sigma); Map2 (1:500, catalogue number ab32454, Abcam); and Tuj1 (1:1,000, catalogue number mms-435p, Convance).

Techniques: Staining, Expressing, Western Blot, Control, In Situ Hybridization, Immunofluorescence, Quantitative RT-PCR, Knockdown, Electroporation

( a ) Immunostaining images of Sox2 at E13.5. Sox2 is dramatically reduced on Rcor2 depletion. VZ, ventricular zone; SVZ, subventricular zone. Scale bar, 20 μm. ( b ) Quantification of Sox2 + cell ratios in VZ/SVZ regions shown in a . Data are shown as mean±s.e.m., t -test, ** P <0.01, n =3 individual experiments. ( c ) Confocal images of Tbr2 expression at E13.5. Tbr2 is dramatically reduced on Rcor2 depletion. Scale bar, 20 μm. ( d ) Quantification of Tbr2 + cell ratios in VZ/SVZ regions shown in c , respectively. Data are shown as mean±s.e.m., t -test, * P <0.05, n =3 individual experiments. ( e ) Immunostaining images of Nestin, Sox2 and Tbr2 in cultured Rcor2 fl/fl and Rcor2 cko NPCs, all of which exhibit significantly reduced expression in the Rcor2 cko NPCs. Scale bar, 20 μm. ( f ) Confocal images of immunofluorescence for Ki67 and PHH3 in Rcor2 fl/fl and Rcor2 cko cortex at E13.5 and E15.5. Ki67 signals (red), but not PHH3 signals (green), are dramatically reduced in Rcor2 cko developing brains. Scale bar, 20 μm. ( g ) Quantification of Ki67 + cells in the VZ/SVZ regions of the developing neocortex as shown in f . Data are shown as mean±s.e.m., t -test, ** P <0.01, n =3 separate stainings from three independent brains. ( h ) Confocal images of BrdU (green) and Ki67 (red) staining in Rcor2 fl/fl and Rcor2 cko cortex 24 and 48 h after BrdU incorporation. Scale bar, 100 μm. ( i ) Quantification of the cell cycle exit by percentage of BrdU + and Ki67 + NPCs divided by BrdU + cells shown in h . Data are shown as mean±s.e.m., t -test, *** P <0.001 and **** P <0.0001, n =3 individual experiments. ( j , k ) Representative images ( j ) and quantification of ( k ) of Rcor2 fl/fl and Rcor2 cko neurosphere sizes. The neurospheres'radius of Rcor2 cko are much smaller than those of Rcor2 fl/fl , t -test, **** P <0.0001, n =12. Scale bar, 50 μm. ( l ) Representative time-lapse imaging of the RGC dividing process in the sections of the cerebral cortex electroporated with RFP-shControl (upper panels) and RFP-shRcor2 (lower panels). The radial glial dividing pattern is abnormal on Rcor2 knockdown, resulting in cell death. Arrows, mother RGCs. Arrowheads, two daughter cells. Scale bar, 50 μm. ( m ) Representative time-lapse images of Rcor2 fl/fl cortex sections electroporated with EGFP-Control (upper panels) and EGFP-Cre (lower panels). Loss of cells is observed with Rcor2 knockout by Cre recombinase electroporation. Scale bar, 50 μm.

Journal: Nature Communications

Article Title: LSD1 co-repressor Rcor2 orchestrates neurogenesis in the developing mouse brain

doi: 10.1038/ncomms10481

Figure Lengend Snippet: ( a ) Immunostaining images of Sox2 at E13.5. Sox2 is dramatically reduced on Rcor2 depletion. VZ, ventricular zone; SVZ, subventricular zone. Scale bar, 20 μm. ( b ) Quantification of Sox2 + cell ratios in VZ/SVZ regions shown in a . Data are shown as mean±s.e.m., t -test, ** P <0.01, n =3 individual experiments. ( c ) Confocal images of Tbr2 expression at E13.5. Tbr2 is dramatically reduced on Rcor2 depletion. Scale bar, 20 μm. ( d ) Quantification of Tbr2 + cell ratios in VZ/SVZ regions shown in c , respectively. Data are shown as mean±s.e.m., t -test, * P <0.05, n =3 individual experiments. ( e ) Immunostaining images of Nestin, Sox2 and Tbr2 in cultured Rcor2 fl/fl and Rcor2 cko NPCs, all of which exhibit significantly reduced expression in the Rcor2 cko NPCs. Scale bar, 20 μm. ( f ) Confocal images of immunofluorescence for Ki67 and PHH3 in Rcor2 fl/fl and Rcor2 cko cortex at E13.5 and E15.5. Ki67 signals (red), but not PHH3 signals (green), are dramatically reduced in Rcor2 cko developing brains. Scale bar, 20 μm. ( g ) Quantification of Ki67 + cells in the VZ/SVZ regions of the developing neocortex as shown in f . Data are shown as mean±s.e.m., t -test, ** P <0.01, n =3 separate stainings from three independent brains. ( h ) Confocal images of BrdU (green) and Ki67 (red) staining in Rcor2 fl/fl and Rcor2 cko cortex 24 and 48 h after BrdU incorporation. Scale bar, 100 μm. ( i ) Quantification of the cell cycle exit by percentage of BrdU + and Ki67 + NPCs divided by BrdU + cells shown in h . Data are shown as mean±s.e.m., t -test, *** P <0.001 and **** P <0.0001, n =3 individual experiments. ( j , k ) Representative images ( j ) and quantification of ( k ) of Rcor2 fl/fl and Rcor2 cko neurosphere sizes. The neurospheres'radius of Rcor2 cko are much smaller than those of Rcor2 fl/fl , t -test, **** P <0.0001, n =12. Scale bar, 50 μm. ( l ) Representative time-lapse imaging of the RGC dividing process in the sections of the cerebral cortex electroporated with RFP-shControl (upper panels) and RFP-shRcor2 (lower panels). The radial glial dividing pattern is abnormal on Rcor2 knockdown, resulting in cell death. Arrows, mother RGCs. Arrowheads, two daughter cells. Scale bar, 50 μm. ( m ) Representative time-lapse images of Rcor2 fl/fl cortex sections electroporated with EGFP-Control (upper panels) and EGFP-Cre (lower panels). Loss of cells is observed with Rcor2 knockout by Cre recombinase electroporation. Scale bar, 50 μm.

Article Snippet: Primary antibodies used were as follows: Rcor2 (1:50, catalogue number NBP1-74099, Novus Biological); Nes (1:300, catalogue number Rat-401, DSHB); Pax6 (1:100, DSHB); Sox2 (1:500, catalogue number sc-17319, Santa Cruz); BrdU (1:500, catalogue number ab6326, Abcam); Ki67 (1:300, catalogue number ab9260, Millipore); Satb2 (1:500, catalogue number ab34735, Abcam); Olig2 (1:200, catalogue number ab109186, Abcam); Shh (1:100, catalogue number sc-33943, Santa Cruz); Ptch1 (1:100, catalogue number sc-6149, Santa Cruz); Dlx2 (1:500, catalogue number ab117546, Abcam); Nkx2.1 (1:300, catalogue number ab76013, Abcam); Tbr1 (1:500, catalogue number ab31940, Abcam); Dcx (1:500, catalogue number ab18723, Abcam); Tbr2 (1:500, catalogue number ab23345, Abcam); Flag M2 (1:1,000, catalogue number F1804, Sigma); Map2 (1:500, catalogue number ab32454, Abcam); and Tuj1 (1:1,000, catalogue number mms-435p, Convance).

Techniques: Immunostaining, Expressing, Cell Culture, Immunofluorescence, Staining, BrdU Incorporation Assay, Imaging, Knockdown, Control, Knock-Out, Electroporation

( a ) Confocal images of Satb2 and Tbr1 expressions in Rcor2 fl/fl and Rcor2 cko cortex at E15.5, which exhibit significant reduction on Rcor2 knockout. Scale bar, 50 μm. ( b ) Quantification of Satb2 + and Tbr1 + cells in Rcor2 fl/fl and Rcor2 cko cortex at E15.5 in a indicates Satb2 and Tbr1 expressions are decreased on Rcor2 depletion during development. Data are shown as mean±s.e.m., t -test, ** P <0.01, n =3 individual experiments. ( c ) Western blot to analyse Dcx, Satb2 and Tbr1 expressions in Rcor2 fl/fl and Rcor2 cko cortex at E15.5. β-Actin is used as an endogenous control. ( d ) Representative images of Map2 and Tuj1 immunostaining in cultured neurons directly dissociated from Rcor2 fl/fl and Rcor2 cko brain cortex at E15.5. Decreased expression of both markers and reduced neurofilaments can be observed in Rcor2 cko cultured neurons. Scale bar, 20 μm. ( e ) Confocal images of in-vitro cultured Rcor2 fl/fl and Rcor2 cko NPCs 5 days post spontaneous differentiation using neuronal marker Map2 and Tuj1 antibodies, both of which are significantly reduced in the differentiated Rcor2 cko NPCs. Scale bar, 20 μm. ( f , g ) RT–qPCR analysis of neuronal markers expression in both Rcor2 fl/fl and Rcor2 cko neocortex at E15.5 stage ( f ) and in-vitro -cultured Rcor2 fl/fl and Rcor2 cko NPCs 5 days post spontaneous differentiation ( g ). Transcripts were normalized to Rcor2 fl/fl group. Data are shown as mean±s.d., t -test, * P <0.05, ** P <0.01 and *** P <0.001, n =3.

Journal: Nature Communications

Article Title: LSD1 co-repressor Rcor2 orchestrates neurogenesis in the developing mouse brain

doi: 10.1038/ncomms10481

Figure Lengend Snippet: ( a ) Confocal images of Satb2 and Tbr1 expressions in Rcor2 fl/fl and Rcor2 cko cortex at E15.5, which exhibit significant reduction on Rcor2 knockout. Scale bar, 50 μm. ( b ) Quantification of Satb2 + and Tbr1 + cells in Rcor2 fl/fl and Rcor2 cko cortex at E15.5 in a indicates Satb2 and Tbr1 expressions are decreased on Rcor2 depletion during development. Data are shown as mean±s.e.m., t -test, ** P <0.01, n =3 individual experiments. ( c ) Western blot to analyse Dcx, Satb2 and Tbr1 expressions in Rcor2 fl/fl and Rcor2 cko cortex at E15.5. β-Actin is used as an endogenous control. ( d ) Representative images of Map2 and Tuj1 immunostaining in cultured neurons directly dissociated from Rcor2 fl/fl and Rcor2 cko brain cortex at E15.5. Decreased expression of both markers and reduced neurofilaments can be observed in Rcor2 cko cultured neurons. Scale bar, 20 μm. ( e ) Confocal images of in-vitro cultured Rcor2 fl/fl and Rcor2 cko NPCs 5 days post spontaneous differentiation using neuronal marker Map2 and Tuj1 antibodies, both of which are significantly reduced in the differentiated Rcor2 cko NPCs. Scale bar, 20 μm. ( f , g ) RT–qPCR analysis of neuronal markers expression in both Rcor2 fl/fl and Rcor2 cko neocortex at E15.5 stage ( f ) and in-vitro -cultured Rcor2 fl/fl and Rcor2 cko NPCs 5 days post spontaneous differentiation ( g ). Transcripts were normalized to Rcor2 fl/fl group. Data are shown as mean±s.d., t -test, * P <0.05, ** P <0.01 and *** P <0.001, n =3.

Article Snippet: Primary antibodies used were as follows: Rcor2 (1:50, catalogue number NBP1-74099, Novus Biological); Nes (1:300, catalogue number Rat-401, DSHB); Pax6 (1:100, DSHB); Sox2 (1:500, catalogue number sc-17319, Santa Cruz); BrdU (1:500, catalogue number ab6326, Abcam); Ki67 (1:300, catalogue number ab9260, Millipore); Satb2 (1:500, catalogue number ab34735, Abcam); Olig2 (1:200, catalogue number ab109186, Abcam); Shh (1:100, catalogue number sc-33943, Santa Cruz); Ptch1 (1:100, catalogue number sc-6149, Santa Cruz); Dlx2 (1:500, catalogue number ab117546, Abcam); Nkx2.1 (1:300, catalogue number ab76013, Abcam); Tbr1 (1:500, catalogue number ab31940, Abcam); Dcx (1:500, catalogue number ab18723, Abcam); Tbr2 (1:500, catalogue number ab23345, Abcam); Flag M2 (1:1,000, catalogue number F1804, Sigma); Map2 (1:500, catalogue number ab32454, Abcam); and Tuj1 (1:1,000, catalogue number mms-435p, Convance).

Techniques: Knock-Out, Western Blot, Control, Immunostaining, Cell Culture, Expressing, In Vitro, Marker, Quantitative RT-PCR

( a ) Schematic overview of strategy to generate an Rcor2 Flag knock-in allele by CRISPR/Cas9. The sgRNA sequence site is shown as a green arrowhead. The start codon of Rcor2 is indicated and capitalized. The oligo donor contained 50 bp homologies on both sides flanking the DSB, in which 3 × Flag sequences are labelled as a red box. ( b ) Western blot analysis to validate FLAG, RCOR2 and LSD1 expressions in Rcor2 Flag knock-in neocortex using Flag-M2 antibody. β-Actin was used as an endogenous control. ( c ) Pie chart depicts distribution of Rcor2 occupancies in genome-wide scale in FLAG ChIP-seq results using Rcor2 Flag knock-in neocortex at E13.5. ( d ) WebLogos of consensus binding motifs of Rcor2 generated by Multiple EM for Motif Elicitation (MEME) motif analysis tool. ( e ) GO analysis for Rcor2-binding regions in genome-wide scale revealed by Flag ChIP-seq results using Rcor2 Flag brain. ( f ) GO analysis for LSD1 occupancy in genome-wide scale revealed by LSD1 ChIP-seq results using Rcor2 Flag brain. ( g ) Density plots analysis of H3K4me1 signal change in promoter regions (−2- to ∼0.5 kb from TSS) on Rcor2 depletion. Compared with all genes, the change of H3K4me1 signal is significantly ( P <0.0005, Kolmogorov–Smirnov test) enhanced in the promoter regions of Shh pathway-related genes on Rcor2 depletion. H3K4me1 signal change on Rcor2 depletion ( x axis); H3K4me1 signal density ( y axis). ( h ) Gene tracks of Rcor2, LSD1 and H3K4me1 enrichments by ChIP-seq analysis at core promoter regions of Dlx2 and upstream regulatory regions of Shh, which are closely related to Shh signalling. ( i ) ChIP–qPCR analysis of Rcor2 Flag and Rcor2 cko cortex at E13.5 using specific FLAG-M2 antibody. Significant enrichments of the Rcor2 at the regulatory regions of Dlx2 and Shh gene locus detected in g in the Rcor2 flag samples are worth noting. Fold enrichments of Rcor2 occupancy compared with input ( y axis). Data are shown as mean±s.d., t -test, *** P <0.001, n =3.

Journal: Nature Communications

Article Title: LSD1 co-repressor Rcor2 orchestrates neurogenesis in the developing mouse brain

doi: 10.1038/ncomms10481

Figure Lengend Snippet: ( a ) Schematic overview of strategy to generate an Rcor2 Flag knock-in allele by CRISPR/Cas9. The sgRNA sequence site is shown as a green arrowhead. The start codon of Rcor2 is indicated and capitalized. The oligo donor contained 50 bp homologies on both sides flanking the DSB, in which 3 × Flag sequences are labelled as a red box. ( b ) Western blot analysis to validate FLAG, RCOR2 and LSD1 expressions in Rcor2 Flag knock-in neocortex using Flag-M2 antibody. β-Actin was used as an endogenous control. ( c ) Pie chart depicts distribution of Rcor2 occupancies in genome-wide scale in FLAG ChIP-seq results using Rcor2 Flag knock-in neocortex at E13.5. ( d ) WebLogos of consensus binding motifs of Rcor2 generated by Multiple EM for Motif Elicitation (MEME) motif analysis tool. ( e ) GO analysis for Rcor2-binding regions in genome-wide scale revealed by Flag ChIP-seq results using Rcor2 Flag brain. ( f ) GO analysis for LSD1 occupancy in genome-wide scale revealed by LSD1 ChIP-seq results using Rcor2 Flag brain. ( g ) Density plots analysis of H3K4me1 signal change in promoter regions (−2- to ∼0.5 kb from TSS) on Rcor2 depletion. Compared with all genes, the change of H3K4me1 signal is significantly ( P <0.0005, Kolmogorov–Smirnov test) enhanced in the promoter regions of Shh pathway-related genes on Rcor2 depletion. H3K4me1 signal change on Rcor2 depletion ( x axis); H3K4me1 signal density ( y axis). ( h ) Gene tracks of Rcor2, LSD1 and H3K4me1 enrichments by ChIP-seq analysis at core promoter regions of Dlx2 and upstream regulatory regions of Shh, which are closely related to Shh signalling. ( i ) ChIP–qPCR analysis of Rcor2 Flag and Rcor2 cko cortex at E13.5 using specific FLAG-M2 antibody. Significant enrichments of the Rcor2 at the regulatory regions of Dlx2 and Shh gene locus detected in g in the Rcor2 flag samples are worth noting. Fold enrichments of Rcor2 occupancy compared with input ( y axis). Data are shown as mean±s.d., t -test, *** P <0.001, n =3.

Article Snippet: Primary antibodies used were as follows: Rcor2 (1:50, catalogue number NBP1-74099, Novus Biological); Nes (1:300, catalogue number Rat-401, DSHB); Pax6 (1:100, DSHB); Sox2 (1:500, catalogue number sc-17319, Santa Cruz); BrdU (1:500, catalogue number ab6326, Abcam); Ki67 (1:300, catalogue number ab9260, Millipore); Satb2 (1:500, catalogue number ab34735, Abcam); Olig2 (1:200, catalogue number ab109186, Abcam); Shh (1:100, catalogue number sc-33943, Santa Cruz); Ptch1 (1:100, catalogue number sc-6149, Santa Cruz); Dlx2 (1:500, catalogue number ab117546, Abcam); Nkx2.1 (1:300, catalogue number ab76013, Abcam); Tbr1 (1:500, catalogue number ab31940, Abcam); Dcx (1:500, catalogue number ab18723, Abcam); Tbr2 (1:500, catalogue number ab23345, Abcam); Flag M2 (1:1,000, catalogue number F1804, Sigma); Map2 (1:500, catalogue number ab32454, Abcam); and Tuj1 (1:1,000, catalogue number mms-435p, Convance).

Techniques: Knock-In, CRISPR, Sequencing, Western Blot, Control, Genome Wide, ChIP-sequencing, Binding Assay, Generated, ChIP-qPCR

( a , b ) Scatter plot analysis of genome-wide expression profiles of Rcor2 cko versus Rcor2 fl/fl samples at E13.5 ( a ) and E15.5 ( b ). Dots above or below the dash line indicate upregulated or downregulated genes on Rcor2 depletion, respectively. Red dots or green dots highlight the significantly differentially expressed genes on Rcor2 depletion. Raw counts ( x axis); gene expression fold changes on Rcor2 depletion ( y axis). ( c ) Venn diagrams of upregulated genes (left) and downregulated genes (right) in Rcor2 cko samples compared with Rcor2 fl/fl samples. ( d ) The profiles of Rcor2 and H3k4me1 enrichments analysed in ChIP-seq results shown in in regulatory regions of genome-wide scale (red) and of the upregulated genes (purple) according to RNA-seq results. ( e ) Correlation network of overlapped upregulated genes in both E13.5 and E15.5 samples. Lines indicate the correlations between two connected genes with R >0.55. Genes were analysed by GO analysis and divided into different categories.

Journal: Nature Communications

Article Title: LSD1 co-repressor Rcor2 orchestrates neurogenesis in the developing mouse brain

doi: 10.1038/ncomms10481

Figure Lengend Snippet: ( a , b ) Scatter plot analysis of genome-wide expression profiles of Rcor2 cko versus Rcor2 fl/fl samples at E13.5 ( a ) and E15.5 ( b ). Dots above or below the dash line indicate upregulated or downregulated genes on Rcor2 depletion, respectively. Red dots or green dots highlight the significantly differentially expressed genes on Rcor2 depletion. Raw counts ( x axis); gene expression fold changes on Rcor2 depletion ( y axis). ( c ) Venn diagrams of upregulated genes (left) and downregulated genes (right) in Rcor2 cko samples compared with Rcor2 fl/fl samples. ( d ) The profiles of Rcor2 and H3k4me1 enrichments analysed in ChIP-seq results shown in in regulatory regions of genome-wide scale (red) and of the upregulated genes (purple) according to RNA-seq results. ( e ) Correlation network of overlapped upregulated genes in both E13.5 and E15.5 samples. Lines indicate the correlations between two connected genes with R >0.55. Genes were analysed by GO analysis and divided into different categories.

Article Snippet: Primary antibodies used were as follows: Rcor2 (1:50, catalogue number NBP1-74099, Novus Biological); Nes (1:300, catalogue number Rat-401, DSHB); Pax6 (1:100, DSHB); Sox2 (1:500, catalogue number sc-17319, Santa Cruz); BrdU (1:500, catalogue number ab6326, Abcam); Ki67 (1:300, catalogue number ab9260, Millipore); Satb2 (1:500, catalogue number ab34735, Abcam); Olig2 (1:200, catalogue number ab109186, Abcam); Shh (1:100, catalogue number sc-33943, Santa Cruz); Ptch1 (1:100, catalogue number sc-6149, Santa Cruz); Dlx2 (1:500, catalogue number ab117546, Abcam); Nkx2.1 (1:300, catalogue number ab76013, Abcam); Tbr1 (1:500, catalogue number ab31940, Abcam); Dcx (1:500, catalogue number ab18723, Abcam); Tbr2 (1:500, catalogue number ab23345, Abcam); Flag M2 (1:1,000, catalogue number F1804, Sigma); Map2 (1:500, catalogue number ab32454, Abcam); and Tuj1 (1:1,000, catalogue number mms-435p, Convance).

Techniques: Genome Wide, Expressing, Gene Expression, ChIP-sequencing, RNA Sequencing

( a ) qPCR analysis of the expression of genes related to the Shh signalling pathway in the cortex of Rcor2 fl/fl and Rcor2 cko brains during development. Significant upregulation of these genes on Rcor2 depletion is noteworthy. Transcripts were normalized to Rcor2 fl/fl group. Data are shown as mean±s.d., t -test, * P <0.05, ** P <0.01 and *** P <0.001, n =3. ( b ) Confocal images of Shh and Ptch1 expressions in Rcor2 fl/fl and Rcor2 cko cortex. Enhanced Shh and Ptch1 signals are observed in Rcor2 cko compared with Rcor2 fl/fl neocortex at E13.5 and E15.5. Insets show high-magnification images of the outlined regions. Scale bars, 50 μm. ( c ) Dlx2 expression in Rcor2 fl/fl and Rcor2 cko cortex detected by immunofluorescence analysis at E15.5. Dlx2 + cells were observed in the neocortex on Rcor2 depletion. Scale bars, 50 μm. ( d ) Confocal images of Shh, Ptch1 and Dlx2 expressions in in-vitro -cultured Rcor2 cko NPCs. Scale bar, 20 μm. ( e ) Western blot analysis of expression levels of Dlx2, Shh and Ptch1 in Rcor2 fl/fl and Rcor2 cko cortex at E15.5. β-Actin is used as an endogenous control.

Journal: Nature Communications

Article Title: LSD1 co-repressor Rcor2 orchestrates neurogenesis in the developing mouse brain

doi: 10.1038/ncomms10481

Figure Lengend Snippet: ( a ) qPCR analysis of the expression of genes related to the Shh signalling pathway in the cortex of Rcor2 fl/fl and Rcor2 cko brains during development. Significant upregulation of these genes on Rcor2 depletion is noteworthy. Transcripts were normalized to Rcor2 fl/fl group. Data are shown as mean±s.d., t -test, * P <0.05, ** P <0.01 and *** P <0.001, n =3. ( b ) Confocal images of Shh and Ptch1 expressions in Rcor2 fl/fl and Rcor2 cko cortex. Enhanced Shh and Ptch1 signals are observed in Rcor2 cko compared with Rcor2 fl/fl neocortex at E13.5 and E15.5. Insets show high-magnification images of the outlined regions. Scale bars, 50 μm. ( c ) Dlx2 expression in Rcor2 fl/fl and Rcor2 cko cortex detected by immunofluorescence analysis at E15.5. Dlx2 + cells were observed in the neocortex on Rcor2 depletion. Scale bars, 50 μm. ( d ) Confocal images of Shh, Ptch1 and Dlx2 expressions in in-vitro -cultured Rcor2 cko NPCs. Scale bar, 20 μm. ( e ) Western blot analysis of expression levels of Dlx2, Shh and Ptch1 in Rcor2 fl/fl and Rcor2 cko cortex at E15.5. β-Actin is used as an endogenous control.

Article Snippet: Primary antibodies used were as follows: Rcor2 (1:50, catalogue number NBP1-74099, Novus Biological); Nes (1:300, catalogue number Rat-401, DSHB); Pax6 (1:100, DSHB); Sox2 (1:500, catalogue number sc-17319, Santa Cruz); BrdU (1:500, catalogue number ab6326, Abcam); Ki67 (1:300, catalogue number ab9260, Millipore); Satb2 (1:500, catalogue number ab34735, Abcam); Olig2 (1:200, catalogue number ab109186, Abcam); Shh (1:100, catalogue number sc-33943, Santa Cruz); Ptch1 (1:100, catalogue number sc-6149, Santa Cruz); Dlx2 (1:500, catalogue number ab117546, Abcam); Nkx2.1 (1:300, catalogue number ab76013, Abcam); Tbr1 (1:500, catalogue number ab31940, Abcam); Dcx (1:500, catalogue number ab18723, Abcam); Tbr2 (1:500, catalogue number ab23345, Abcam); Flag M2 (1:1,000, catalogue number F1804, Sigma); Map2 (1:500, catalogue number ab32454, Abcam); and Tuj1 (1:1,000, catalogue number mms-435p, Convance).

Techniques: Expressing, Immunofluorescence, In Vitro, Cell Culture, Western Blot, Control

( a ) Knockdown of Rcor2 impairs cortical neurogenesis, which can be partially rescued by knockdown of Shh during cortical development. In-utero electroporation with RFP-shControl (red)/GFP-shControl (green), RFP-shRcor2 (red)/GFP-shControl (green), RFP-shControl (red)/GFP-shShh (green) or RFP-shRcor2 (red)/GFP-shShh (green) plasmids was performed at E13.5. Cerebral sections were fixed and imaged at E16.5. VZ, ventricular zone; SVZ, subventricular zone; CP, cortical plate. Scale bar, 50 μm. ( b ) Quantification of the percentage of RFP + /GFP + cells in different regions of the developing cortex after electroporation shown in a . Data are shown as mean±s.e.m., t -test, ** P <0.01 and *** P <0.001, n =3 individual experiments. ( c ) Inhibition of Shh by Cyclopamine can partially rescue neurogenesis defects caused by Rcor2 downregulation during cortical development. Rcor2 was knocked down at the lateral ventricle in the brain by in-utero electroporation with RFP-shRcor2 plasmids at E13.5. Cerebral sections were collected at E14.5 and then treated with cyclopamine to inhibit Shh activity for 48 h. Scale bar, 50 μm. ( d ) Quantification of the percentage of RFP + cells in different regions of the developing neocortex after knockdown of Rcor2 or inhibition of Shh shown in c . Data are shown as mean±s.e.m., t -test, * P <0.05, n =3 individual experiments. ( e ) Representative images depicting neurosphere size is partially rescued in the in-vitro -cultured Rcor2 cko NPCs after treatment with Cyclopamine. Scale bar, 50 μm. ( f ) Histogram depicting cell numbers of in-vitro -cultured Rcor2 fl/fl and Rcor2 cko NPCs with or without Cyclopamine treatment for 48 h. Cells (5 × 10 5 ) are seeded initially. Data are shown as mean±s.e.m., t -test, ** P <0.01, n =3. ( g ) Confocal images of Tuj1 expression in the differentiated cells from in-vitro -cultured Rcor2 fl/fl and Rcor2 cko NPCs with or without Cyclopamine treatment. Tuj1 expressions are partially restored in Cyclopamine-treated Rcor2 cko cells. Scale bar, 20 μm. ( h ) Model of Rcor2 function in neurogenesis in the developing neocortex. Rcor2 safeguards cortical neurogenesis by recruiting LSD1 complex to the regulatory regions of Dlx2 and Shh genes, to inhibit the Shh pathway activation during development. The absence of Rcor2 leads to inhibition release of these genes and thus ectopic activation of Shh signalling in the developing neocortex, resulting in cortical neurogenesis defects.

Journal: Nature Communications

Article Title: LSD1 co-repressor Rcor2 orchestrates neurogenesis in the developing mouse brain

doi: 10.1038/ncomms10481

Figure Lengend Snippet: ( a ) Knockdown of Rcor2 impairs cortical neurogenesis, which can be partially rescued by knockdown of Shh during cortical development. In-utero electroporation with RFP-shControl (red)/GFP-shControl (green), RFP-shRcor2 (red)/GFP-shControl (green), RFP-shControl (red)/GFP-shShh (green) or RFP-shRcor2 (red)/GFP-shShh (green) plasmids was performed at E13.5. Cerebral sections were fixed and imaged at E16.5. VZ, ventricular zone; SVZ, subventricular zone; CP, cortical plate. Scale bar, 50 μm. ( b ) Quantification of the percentage of RFP + /GFP + cells in different regions of the developing cortex after electroporation shown in a . Data are shown as mean±s.e.m., t -test, ** P <0.01 and *** P <0.001, n =3 individual experiments. ( c ) Inhibition of Shh by Cyclopamine can partially rescue neurogenesis defects caused by Rcor2 downregulation during cortical development. Rcor2 was knocked down at the lateral ventricle in the brain by in-utero electroporation with RFP-shRcor2 plasmids at E13.5. Cerebral sections were collected at E14.5 and then treated with cyclopamine to inhibit Shh activity for 48 h. Scale bar, 50 μm. ( d ) Quantification of the percentage of RFP + cells in different regions of the developing neocortex after knockdown of Rcor2 or inhibition of Shh shown in c . Data are shown as mean±s.e.m., t -test, * P <0.05, n =3 individual experiments. ( e ) Representative images depicting neurosphere size is partially rescued in the in-vitro -cultured Rcor2 cko NPCs after treatment with Cyclopamine. Scale bar, 50 μm. ( f ) Histogram depicting cell numbers of in-vitro -cultured Rcor2 fl/fl and Rcor2 cko NPCs with or without Cyclopamine treatment for 48 h. Cells (5 × 10 5 ) are seeded initially. Data are shown as mean±s.e.m., t -test, ** P <0.01, n =3. ( g ) Confocal images of Tuj1 expression in the differentiated cells from in-vitro -cultured Rcor2 fl/fl and Rcor2 cko NPCs with or without Cyclopamine treatment. Tuj1 expressions are partially restored in Cyclopamine-treated Rcor2 cko cells. Scale bar, 20 μm. ( h ) Model of Rcor2 function in neurogenesis in the developing neocortex. Rcor2 safeguards cortical neurogenesis by recruiting LSD1 complex to the regulatory regions of Dlx2 and Shh genes, to inhibit the Shh pathway activation during development. The absence of Rcor2 leads to inhibition release of these genes and thus ectopic activation of Shh signalling in the developing neocortex, resulting in cortical neurogenesis defects.

Article Snippet: Primary antibodies used were as follows: Rcor2 (1:50, catalogue number NBP1-74099, Novus Biological); Nes (1:300, catalogue number Rat-401, DSHB); Pax6 (1:100, DSHB); Sox2 (1:500, catalogue number sc-17319, Santa Cruz); BrdU (1:500, catalogue number ab6326, Abcam); Ki67 (1:300, catalogue number ab9260, Millipore); Satb2 (1:500, catalogue number ab34735, Abcam); Olig2 (1:200, catalogue number ab109186, Abcam); Shh (1:100, catalogue number sc-33943, Santa Cruz); Ptch1 (1:100, catalogue number sc-6149, Santa Cruz); Dlx2 (1:500, catalogue number ab117546, Abcam); Nkx2.1 (1:300, catalogue number ab76013, Abcam); Tbr1 (1:500, catalogue number ab31940, Abcam); Dcx (1:500, catalogue number ab18723, Abcam); Tbr2 (1:500, catalogue number ab23345, Abcam); Flag M2 (1:1,000, catalogue number F1804, Sigma); Map2 (1:500, catalogue number ab32454, Abcam); and Tuj1 (1:1,000, catalogue number mms-435p, Convance).

Techniques: Knockdown, In Utero, Electroporation, Inhibition, Activity Assay, In Vitro, Cell Culture, Expressing, Activation Assay

Schematics (not to scale) of ( a ) an electrochemical cell and a shadowgraphy system; ( b ) an H 2 bubble residing atop a carpet of microbubbles, generated between its bottom and the electrode surface, as shown by the red rectangle in ( a ). An inset zooms into the bottom of the bubble, marked by a black rectangle, where an intensive bubble-carpet coalescence takes place. The red lines represent the distribution of the current density ( j ), and the black streamlines on the right represent the Marangoni convection with velocity v . The panels ( a ) and ( b ) are adapted from Ref. ; ( c ) PTV optics used to measure the velocity of injected droplets inside the H 2 bubble. The cyan lines indicate the laser rays' path. For details, see text.

Journal: Nature Communications

Article Title: Electrolyte droplet spraying in H 2 bubbles during water electrolysis under normal and microgravity conditions

doi: 10.1038/s41467-025-59762-7

Figure Lengend Snippet: Schematics (not to scale) of ( a ) an electrochemical cell and a shadowgraphy system; ( b ) an H 2 bubble residing atop a carpet of microbubbles, generated between its bottom and the electrode surface, as shown by the red rectangle in ( a ). An inset zooms into the bottom of the bubble, marked by a black rectangle, where an intensive bubble-carpet coalescence takes place. The red lines represent the distribution of the current density ( j ), and the black streamlines on the right represent the Marangoni convection with velocity v . The panels ( a ) and ( b ) are adapted from Ref. ; ( c ) PTV optics used to measure the velocity of injected droplets inside the H 2 bubble. The cyan lines indicate the laser rays' path. For details, see text.

Article Snippet: The cell was connected to an electrochemical workstation (CHI 660E, Autolab or Biologic VSP-300) and operated at a constant potential of either −3, −4, or −7 V. Fig. 5 Experimental schematics.

Techniques: Generated, Convection, Injection

CPI-7c efficiently degrades MDM2 but leads to stabilization of p53 and induces global ubiquitination response. In ( A ), MCF-7 cells were treated with 5, 10, 15 and 20 µM CPI-7c and Nutlin-3, and expression levels of MDM2, ubiquitin and p53 were assessed by using immunoblotting and shown in the image. In panel ( B ), MCF-7 cells were grown in coverslips and treated with either vehicle or 10 and 20 µM of CPI-7c and Nutlin-3, respectively, for 24h and subjected to immunofluorescence staining and analyzed by confocal microscope. Merged confocal photographs represent the superimposition of green (p53) and red (MDM2) images, and the magnified area of the box was shown in inset pictures. Scale bar, 20 µm. Representative of three independent experiments. In panel ( C ), RT–PCR analysis shows the mRNA expression MDM2 and GAPDH genes in response to 10 and 20 µM doses of CPI-7c and Nutlin-3 treatment.

Journal: Carcinogenesis

Article Title: Dual targeting of MDM2 with a novel small-molecule inhibitor overcomes TRAIL resistance in cancer

doi: 10.1093/carcin/bgw088

Figure Lengend Snippet: CPI-7c efficiently degrades MDM2 but leads to stabilization of p53 and induces global ubiquitination response. In ( A ), MCF-7 cells were treated with 5, 10, 15 and 20 µM CPI-7c and Nutlin-3, and expression levels of MDM2, ubiquitin and p53 were assessed by using immunoblotting and shown in the image. In panel ( B ), MCF-7 cells were grown in coverslips and treated with either vehicle or 10 and 20 µM of CPI-7c and Nutlin-3, respectively, for 24h and subjected to immunofluorescence staining and analyzed by confocal microscope. Merged confocal photographs represent the superimposition of green (p53) and red (MDM2) images, and the magnified area of the box was shown in inset pictures. Scale bar, 20 µm. Representative of three independent experiments. In panel ( C ), RT–PCR analysis shows the mRNA expression MDM2 and GAPDH genes in response to 10 and 20 µM doses of CPI-7c and Nutlin-3 treatment.

Article Snippet: Nutlin-3 and ChIP grade antibody for ubiquitin, and HDM2 (catalytic RING domain) peptide were purchased from Enzo Life Sciences.

Techniques: Expressing, Western Blot, Immunofluorescence, Staining, Microscopy, Reverse Transcription Polymerase Chain Reaction

CPI-7c physically binds to RING and N-terminal domains of MDM2 and selectively induces ubiquitination of MDM2 as well as interferes at p53–MDM2 interaction. MCF-7 cells were treated with 10 µM dose of CPI-7c and Nutlin-3 for 24h, and protein lysates were prepared for immunoprecipitation using human anti-ubiquitin. Ubiqutinated MDM2 level was measured using western blotting of anti-MDM2 antibody with proper input control and shown in panel ( A ). Similarly, ( B ) represents the level of associated p53 when lysate was immunoprecipitated using anti-MDM2 antibody. Panel ( C ) represents standard scatchard exponential hyperbolic binding curve of direct physical binding of CPI-7c and Nutlin-3 with N-terminal peptide and RING domain peptide of MDM2 in left and right panels, respectively, along with respective dissociation equilibrium constant ( Kd ) values.

Journal: Carcinogenesis

Article Title: Dual targeting of MDM2 with a novel small-molecule inhibitor overcomes TRAIL resistance in cancer

doi: 10.1093/carcin/bgw088

Figure Lengend Snippet: CPI-7c physically binds to RING and N-terminal domains of MDM2 and selectively induces ubiquitination of MDM2 as well as interferes at p53–MDM2 interaction. MCF-7 cells were treated with 10 µM dose of CPI-7c and Nutlin-3 for 24h, and protein lysates were prepared for immunoprecipitation using human anti-ubiquitin. Ubiqutinated MDM2 level was measured using western blotting of anti-MDM2 antibody with proper input control and shown in panel ( A ). Similarly, ( B ) represents the level of associated p53 when lysate was immunoprecipitated using anti-MDM2 antibody. Panel ( C ) represents standard scatchard exponential hyperbolic binding curve of direct physical binding of CPI-7c and Nutlin-3 with N-terminal peptide and RING domain peptide of MDM2 in left and right panels, respectively, along with respective dissociation equilibrium constant ( Kd ) values.

Article Snippet: Nutlin-3 and ChIP grade antibody for ubiquitin, and HDM2 (catalytic RING domain) peptide were purchased from Enzo Life Sciences.

Techniques: Immunoprecipitation, Western Blot, Binding Assay