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Journal: Cell reports
Article Title: Variation of Human Neural Stem Cells Generating Organizer States In Vitro before Committing to Cortical Excitatory or Inhibitory Neuronal Fates
doi: 10.1016/j.celrep.2020.107599
Figure Lengend Snippet: KEY RESOURCES TABLE
Article Snippet: The following primary antibodies were used at the concentration indicated by manufacturer’s protocol: CaM Kinase II alpha (6G9) (NB100–1983), LMX1A (NBP1–81303) Novusbio; SYNAPSIN (106 001), HOMER (160 003) Synaptic System; EGFR (Ab231), FGFR1 phosphoY654 (Ab59194), TBR1 (Ab31940), REELIN (Ab18570), CYCLIN D1 (Ab10540), FGFR2 (Ab10648), BMPR1A (Ab38560) Abcam; HES1 (11988), p-SMAD1/5 (9516), CYCLIN D1 (2926), pERK1/2 (4370), FGFR1 (9740) Cell Signaling Technology; PAX6 (PRB-278P) BioLegend; NESTIN (MAB1259), OTX2 (AF1979), PDGFR alpha (AF1062; AF307), SOX2 (AF2018; MAB2018), SOX21 (AF3538), TuJ1 (MAB1195), EGFR (AF1280),
Techniques: Virus, Plasmid Preparation, Recombinant, Transfection, Antibody Labeling, In Vitro, Microarray, Gene Expression, Derivative Assay, Software
Journal: Nature Communications
Article Title: Primary cilia and SHH signaling impairments in human and mouse models of Parkinson’s disease
doi: 10.1038/s41467-022-32229-9
Figure Lengend Snippet: a Immunostainings exemplarily shown for O3H-R1-003. hiPSC pluripotency staining for markers OCT4, NANOG, SOX2. Scale bar=200 µm. hNPC staining for markers SOX1, SOX2, NESTIN, PAX6. Scale bar=100 µm. Neuron staining for markers TUBB3 and DAn marker TH. Scale bar=100 µm. Astrocyte staining for markers GFAP and SLC1A3. Scale bar=100 µm. b Summary of somatic CNVs identified in hNPC clones by chromosomal microarray analysis shown as total number of somatic CNVs detected per analyzed clone and average length of CNVs (in kb; green=copy number gain; orange=copy number loss) per analyzed clone. n = 5 Ctrl and 7 sPD patients. c Circos plot showing the genomic distribution of somatic CNVs in Ctrl (blue) and sPD (red) clones. d Quantification of RBFOX3 (synonym: NeuN) positive as well as TH / RBFOX3 double-positive cells in DAn populations. n = 5 Ctrl and 7 sPD clones, in triplicates. e Characterization of neurite morphologies of DAns. Boxplots show the average number of neurites emerging from TH positive cell bodies, their average number of branch points and their average length. n = 5 Ctrl and 7 sPD clones, in triplicates. Boxplots display the median and range from the 25th to 75th percentile. Whiskers extend from the min to max value. Each dot represents one patient. P -values were determined by two-sided t -test d (right), e ; two-sided Mann–Whitney-U test b, d (left). * p < 0.05, ** p < 0.01, *** p < 0.001. Source data are provided as a Source Data file.
Article Snippet: Primary antibodies were diluted as follows: AC-TUB (T6793, Sigma-Aldrich; 1:1000), ARL13B (17711-1-AP, Proteintech; 1:500), GFAP (MAB360, Millipore; 1:250), GLI3 (AF3690, R&D; 1:100), NANOG (AF1997, R&D Systems; 1:200), NES (Ma1110, Thermo Fisher Scientific; 1:250), PAX6 (Ab78545, Abcam; 1:200), PITX3 (38-2850, Invitrogen; 1:300), POU5F1 (2840 S, Cell Signaling; 1:500), RBFOX3 (ab104224, Abcam; 1:800),
Techniques: Staining, Marker, Clone Assay, Microarray, Full Display Name, MANN-WHITNEY
Journal: Neoplasia (New York, N.Y.)
Article Title: SAMSN1 Is a Tumor Suppressor Gene in Multiple Myeloma
doi: 10.1016/j.neo.2014.07.002
Figure Lengend Snippet: SAMSN1 expression is reduced in CD138 + PCs of patients with MM and HMCL. (A) SAMSN1 expression (as determined by real-time PCR) is significantly reduced in the BMs of patients with MM ( n = 34) compared with patients with MGUS ( n = 9) and healthy age-matched controls ( n = 5; * P < .05, ** P < .001, one-way ANOVA with Tukey’s multiple comparison test). (B) SAMSN1 expression in CD138 + MACS isolated PCs from patients with MM negatively correlates with BM PC burden ( n = 10, r 2 = 0.6147, P = .0043). (C) In silico analysis of published microarray data. CD138 + PCs were isolated by MACS from 414 patients with MM, 44 patients with MGUS, and 22 age-matched controls. RNA was extracted and analyzed using the Affymetrix U133Plus2.0 microarray platform (GEO Accession Nos GSE4581 and GSE5900). Expression of SAMSN1 is significantly reduced in PCs of patients with MM compared to those of patients with MGUS and normal controls. P < 0.0001, one-way ANOVA with Tukey’s multiple comparison test. (D) Total RNA was extracted from six HMCLs and reverse transcribed. The levels of SAMSN1 expression were assessed by real-time PCR.
Article Snippet: PCs were isolated from flushed long bones and identified using
Techniques: Expressing, Real-time Polymerase Chain Reaction, Comparison, Isolation, In Silico, Microarray, Reverse Transcription
Journal: Cell reports
Article Title: Synthetic Essentiality of Metabolic Regulator PDHK1 in PTEN-Deficient Cells and Cancers
doi: 10.1016/j.celrep.2019.07.063
Figure Lengend Snippet: KEY RESOURCES TABLE
Article Snippet:
Techniques: Microarray, Recombinant, DC Protein Assay, Viability Assay, Chromatin Immunoprecipitation, Expressing, Luciferase, Malachite Green Assay, Release Assay, shRNA, Plasmid Preparation, Software
Journal: medRxiv
Article Title: Inhibition of SHP2 ameliorates psoriasis by decreasing TLR7 endosome localization
doi: 10.1101/2020.09.28.20202861
Figure Lengend Snippet: (A) Expression of PTPN11 ( gene encoding SHP2 ) in skin lesions in psoriatic patients compared with skin from healthy donors based on microarray data (No. GSE14905). (B) Expression of PTPN11 in human PBMCs from psoriatic patients (n=14) and normal controls (n=16). (C) Western blot analysis of PBMCs lysates derived from psoriatic patients and normal controls. (D) Representative SHP2 staining in skin sections from psoriatic patients (n=13) and normal controls (n=5). Scale bars: 200 μm. (E) The catalytic activity of SHP2 was measured in human PBMCs lysates derived from psoriatic patients (n=25) and normal controls (n=25). (F) Representative p-ERK staining of skin sections from psoriatic patients and normal controls. Scale bars: 200 μm. (G) Quantitative PCR analysis of Ptpn11 mRNA levels in the IMQ-treated or non-treated dorsal back from C57BL/6J mice at day 5 (n=6/group). Data were normalized to GAPDH expression. (H) Representative histological sections of IMQ-treated or non-treated dorsal back from C57BL/6J mice at day 5. Scale bar: 100 μm. Data represent mean ± SEM. P values are determined by Two-tailed Mann-Whitney U test (A and B) or Two-tailed Student’s t test (E and G). * P <0.05, ** P <0.01.
Article Snippet: For immunohistochemistry, the human and mouse skin paraffin sections were deparaffinized, rehydrated, and antibody retrieved with sodium citrate, blocked, then stained with anti-SHP2 (Santa Cruz, catalog sc-7384),
Techniques: Expressing, Microarray, Western Blot, Derivative Assay, Staining, Activity Assay, Real-time Polymerase Chain Reaction, Two Tailed Test, MANN-WHITNEY
Journal: Journal of immunology (Baltimore, Md. : 1950)
Article Title: Lectin-like receptor Ly49s3 on dendritic cells contributes to the differentiation of regulatory T cells in the rat thymus.
doi: 10.4049/jimmunol.1203511
Figure Lengend Snippet: FIGURE 2. Characteristics of the HHR thymus and differentiation status of thymocytes in the thymus. (A) Graphs show the weights and cellularities of SDR and HHR thymi at 4–5 wk of age. Three SDRs and HHRs were used for each analysis. Data are shown as mean 6 SD. *p , 0.05. (B) Histological sections of thymi from 4-wk-old SDRs and HHRs were stained with H&E. Scale bars represent 1 mm. Representative results of two SDRs and HHRs are shown. (C) The differentiation status of thymocytes was analyzed with a flow cytometer. Representative results of three SDRs and HHRs are shown. An arrow indicates a population of DP thymocytes with decreased CD4 levels. Averaged values from three independent flow cytometric analyses for the proportions of DP, CD4-SP, CD8-SP, and DN thymocytes are shown in the lower graph. Data are shown as mean 6 SD. (D) Expression levels of Cd4 and Cd8 genes in the thymus were analyzed by real-time RT-PCR. Three SDRs and HHRs were used. The level of each gene is shown relative to the value for the SDR, which is set at 1. Data are shown as mean 6 SD. *p , 0.05.
Article Snippet: Cell surface marker proteins were stained using
Techniques: Staining, Cytometry, Expressing, Quantitative RT-PCR
Journal: Journal of immunology (Baltimore, Md. : 1950)
Article Title: Lectin-like receptor Ly49s3 on dendritic cells contributes to the differentiation of regulatory T cells in the rat thymus.
doi: 10.4049/jimmunol.1203511
Figure Lengend Snippet: FIGURE 3. nTreg numbers in the HHR thymus. (A) Expression levels of Cd25 and Foxp3 genes in CD4-SP thymocytes were analyzed by real-time RT- PCR. Three SDRs and HHRs were used. The level of each gene is shown relative to the value for the SDR, which is set at 1. Data are shown as mean 6 SD. *p , 0.05. (B) Upper, The proportion of CD4+CD25+ cells in the thymus was determined by flow cytometric analysis. Representative results of three SDRs and HHRs are shown. Averaged values from three independent analyses for the proportion of CD4+CD25+ cells are shown in the graph. Data are shown as mean 6 SD. Lower, The proportion of Foxp3+ cells in the CD4+CD25+ cell fraction was determined by flow cytometric analysis. Representative results of three SDRs and HHRs are shown. Averaged values from three independent analyses for the proportion of Foxp3+ cells in the CD4+CD25+ cell fraction are shown in the graph. Data are shown as mean 6 SD. *p , 0.05. (C) Upper, Estimated values for the proportion of CD4+CD25+Foxp3+ nTregs in the thymus were calculated using the values of the proportion of CD4+CD25+ cells in the thymus and those of Foxp3+ cells in the CD4+CD25+ cell fraction obtained from flow cytometric analysis and are shown in the graph. Data are shown as mean 6 SD. *p , 0.05. Lower, Estimated values for the absolute number of CD4+CD25+Foxp3+ nTregs in the thymus were calculated using the values of the proportion of CD4+CD25+ cells in the thymus and those of total thymus cell number (Fig. 2A) and are shown in the graph. Data are shown as mean 6 SD. *p , 0.05.
Article Snippet: Cell surface marker proteins were stained using
Techniques: Expressing, Quantitative RT-PCR
Journal: Journal of immunology (Baltimore, Md. : 1950)
Article Title: Lectin-like receptor Ly49s3 on dendritic cells contributes to the differentiation of regulatory T cells in the rat thymus.
doi: 10.4049/jimmunol.1203511
Figure Lengend Snippet: FIGURE 5. Loss of Ly49s3 gene expression in HHR thymic cDCs. (A) Left, Genome-wide microarray CGH analysis, performed with genomic DNA from SDR and HHR livers, shows the deletion of four Ly49 family genes—Ly49s4, Ly49i4, Ly49s3, and Ly49i3—in chromosome 4 at the q42 region (shaded area). Data shown are representative of two independent analyses. Right, Genomic PCR with DNA from SDR and HHR livers was performed to confirm the deletion of DNA in this region. As an internal standard, the Ccr4 gene, located at chromosome 8q32, was used. (B) Left, RT-PCR analysis of the expression of the Ly49s3 gene was performed with total RNA from SDR and HHR thymi. As an internal standard, the Gapdh gene was used. Middle, RT- PCR analysis of Ly49s3 gene expression in DP, CD4-SP, and CD8-SP thymocytes of the SDR thymus was performed with total RNA from the cells. Note that it was not possible to isolate pure DN thymocytes by positive and/or negative selection using CD4 and CD8a microbeads because the remaining cells after the selection of DP, CD4-SP, and CD8-SP cells are a mixture of DN thymocytes and all of the other types of cells. Right, RT-PCR analysis of Ly49s3 gene expression in cDCs of SDR and HHR thymi was performed with total RNA from the cells.
Article Snippet: Cell surface marker proteins were stained using
Techniques: Gene Expression, Genome Wide, Microarray, Reverse Transcription Polymerase Chain Reaction, Expressing, Selection
Journal: Journal of immunology (Baltimore, Md. : 1950)
Article Title: Lectin-like receptor Ly49s3 on dendritic cells contributes to the differentiation of regulatory T cells in the rat thymus.
doi: 10.4049/jimmunol.1203511
Figure Lengend Snippet: FIGURE 6. Expression of the nTreg marker and MHC class II genes in the mixed-cell culture. (A) A total of 1 3 106 CD4-SP thymocytes isolated from the SDR thymus were cultured with 2.5 3 105 cDCs from the SDR thymus, and 1 3 106 CD4-SP thymocytes from the HHR thymus were cultured with 2.5 3 105 cDCs from the HHR thymus. At 3 d later, total RNA was extracted and expression levels of nTreg marker genes Foxp3, Cd25, Ctla4, and Pd-1 and MHC class II genes Rt1-Ba and Rt1-Bb were determined by real-time RT-PCR. Three independent experiments were performed for each mixed-cell culture. The level of each gene is shown relative to the value for the mixed culture of cells from the SDR thymus, which is set at 1. Data are shown as mean 6 SD. *p , 0.05. (B) To confirm the expression levels of Foxp3 and CD25, an additional mixed-cell culture experiment was performed, and the proportion of Foxp3+ or CD25+ cells was determined by flow cytometric analysis. (C) As control experiments, 1 3 106 CD4-SP thymocytes were cultured alone for 3 d and the same real-time RT-PCR analyses as above were performed. Three independent experiments were performed for each culture. The level of each gene is shown relative to the value for SDR cells, which is set at 1. Data are shown as mean 6 SD. *p , 0.05. (D) Effects of cDCs on nTreg marker gene expression. The expression levels of nTreg marker genes in mixed-cell (A) and control cultures (C) are shown in the same graph relative to the value for the SDR control culture, which is set at 1. Statistical analysis was performed between the induction ratios of gene expression. Data are shown as mean 6 SD. *p , 0.05. (E) A total of 1 3 106 CD4+CD82CD252 thymocytes isolated from SDR and HHR thymi were cultured with 2.5 3 105 cDCs isolated from SDR and HHR thymi, respectively. At 3 d later, total RNA was extracted and expression levels of nTreg marker genes Foxp3, Cd25, Ctla4, and Pd-1 were determined by real-time RT-PCR. Three independent experiments were performed for each mixed-cell culture. The level of each gene is shown relative to the value for the mixed culture of cells from the SDR thymus, which is set at 1. Data are shown as mean 6 SD. *p , 0.05.
Article Snippet: Cell surface marker proteins were stained using
Techniques: Expressing, Marker, Cell Culture, Isolation, Quantitative RT-PCR, Control, Gene Expression
Journal: Journal of immunology (Baltimore, Md. : 1950)
Article Title: Lectin-like receptor Ly49s3 on dendritic cells contributes to the differentiation of regulatory T cells in the rat thymus.
doi: 10.4049/jimmunol.1203511
Figure Lengend Snippet: FIGURE 7. Expression of the nTreg marker and MHC class II genes in the mixed-cell culture using Ly49s3-expressing HHR thymic cDCs. (A) The FLAG- tagged Ly49s3 structure is schematically represented. R: arginine residue. (B) Left, 293T cells were transfected with recombinant vectors before being packaged into the virus, and cell lysates were subjected to Western blot analysis with the anti-FLAG M2 Ab. Right, The proteins on the membrane were stained with fast green. (C) Left, cDCs from the HHR thymus were transduced with the lentiviral vector of FLAG-tagged Ly49s3, and the expression of the fusion protein on the surface of cDCs was confirmed by fluorescence microscopic observations with the anti-FLAG M2 Ab. Right, Phase contrast appearance of the identical cells shown in the left photographs. Note dendrites on the surface of the cells. The cells were suspended in buffer and all the photos were taken. Original magnification 3800. (D) A total of 2.5 3 105 cDCs isolated from the HHR thymus were transduced with the lentiviral vector of FLAG-tagged Ly49s3 (Ly) or the mock vector (Mo) and then mixed with 1 3 106 CD4-SP thymocytes isolated from the HHR thymus. At 3 d later, total RNAwas extracted and the expression levels of nTreg marker genes Foxp3, Cd25, Ctla4, and Pd-1 and MHC class II genes Rt1-Ba and Rt1-Bb were determined by real-time RT-PCR. Three independent experiments were performed for each culture. The level of each gene is shown relative to the value for the mixed culture, using cDCs transduced with the mock vector, which is set at 1. Data are shown as mean 6 SD. *p , 0.05. (E) A total of 2.5 3 105 cDCs from the HHR thymus were transduced with the lentiviral vector of FLAG-tagged Ly49s3 and then mixed with 1 3 106 CD4-SP thymocytes from the HHR thymus. Next 5 mg of anti-rat MHC class I Ab or normal IgG was added to the culture. At 3 d later, total RNA was extracted, and the expression levels of nTreg marker genes and MHC class II genes were determined by real-time RT-PCR. Three independent experiments were performed for each culture. The level of each gene is shown relative to the value for the mixed culture in the presence of normal IgG, which is set at 1. Data are shown as mean 6 SD. *p , 0.05. (F) Summary of the experiments performed using the lentiviral vector of the Ly49s3 gene and anti-MHC class I Ab. The level of each gene is shown relative to the value for mock-transduced cells, which is set at 1. Data are shown as mean 6 SD. *p , 0.05.
Article Snippet: Cell surface marker proteins were stained using
Techniques: Expressing, Marker, Cell Culture, Residue, Transfection, Recombinant, Virus, Western Blot, Membrane, Staining, Transduction, Plasmid Preparation, Isolation, Quantitative RT-PCR
Journal: Nucleic Acids Research
Article Title: Sustained pigmentation causes DNA damage and invokes translesion polymerase Polκ for repair in melanocytes
doi: 10.1093/nar/gkad704
Figure Lengend Snippet: Melanin synthesis causes γH2AX foci formation DNA strand breaks and abasic sites formation. ( A ) Immunofluorescence of B16 cells treated with PTU and tyrosine with phosphorylated H2AX antibody. Nuclear DNA stained with DAPI (blue) and γH2AX in (red). Experiment was performed with two biological replicates and a representative image is depicted. Scale bar 10 μm. ( B ) Quantitation of mean fluorescence intensity per cell of γH2AX from two biological replicates of pigmented day 7 PTU or tyrosine treated cells (shown in A). Data represented as a box plot, horizontal line represents mean and whiskers represent SEM. Ordinary one-way ANOVA was performed for multiple comparisons. Adjusted P -value: * P -value < 0.05, *** P -value < 0.001, **** P -value < 0.0001. ( C ) (Top) Cell pellet of day 7 B16 mouse melanoma cells grown at low density (100 cells/cm 2 ). Cells were left untreated for control treated with tyrosinase inhibitor 200 μM phenylthiourea (PTU) or 1mM tyrosinase substrate L-tyrosine (Tyr) for 7 days. Number of cells, mean ± SEM across three biological replicates is depicted below the image of the cell pellet. Numbers represent mean ± SEM cell counts across biological triplicates. (Bottom) Number of abasic sites in the genomic DNA was estimated by an aldehyde specific conjugation of biotin and subsequent detection using streptavidin based detection. Using standards, abasic sites per 10 5 bp is estimated. Bars represent mean ± SEM across duplicate biological experiments, each conducted in triplicates. Ordinary one-way ANOVA was performed for multiple comparisons * P -value < 0.05, ** P -value < 0.01, *** P -value < 0.001. ( D ) Single cell electrophoresis followed by comet analysis of B16 cells undergoing varying levels of pigmentation in the presence of PTU and tyrosine (alkaline comet assay). Experiment was carried out at mid phase (day 5) and late phase (day 7) of pigmentation. Mean tail moment distribution across each population of duplicate biological experiments with atleast 50 comets analyzed is depicted by a violin plot. Two-way ANOVA was performed. Adjusted P values; ns non-significant, * P -value < 0.05, ** P -value < 0.01, *** P -value < 0.001, **** P -value < 0.0001. ( E ) Neutral comet assay on B16 unpigmented (day 0) and pigmented (day 7) cells. Mean tail moment distribution across each population of duplicate biological experiments with atleast 50 comets analyzed is depicted by a violin plot. Student's unpaired t-test was performed. P values ns non-significant. ( F ) Single cell electrophoresis followed by comet analysis of B16 cells untreated, treated with DMSO for 24 h, melanin synthesis ( ex-cellulo L-tyrosine and tyrosinase added to cell media) for 24 h or cells treated with 1 mM dihydroxyindole (DHI) for 24 h (alkaline comet assay). Mean tail moment distribution across each population of duplicate biological experiments with atleast 50 comets analyzed is depicted by a violin plot. Ordinary one-way ANOVA was performed. Adjusted P values: * P -value < 0.05, **** P -value < 0.00001.
Article Snippet: Polκ (ab57070), γH2AX (CST 9718),
Techniques: Immunofluorescence, Staining, Quantitation Assay, Fluorescence, Conjugation Assay, Electrophoresis, Alkaline Single Cell Gel Electrophoresis, Neutral Comet Assay
Journal: Nucleic Acids Research
Article Title: Sustained pigmentation causes DNA damage and invokes translesion polymerase Polκ for repair in melanocytes
doi: 10.1093/nar/gkad704
Figure Lengend Snippet: Normal human epidermal melanocytes (NHEM) respond to pigmentation induced DNA breaks by elevating Polκ. ( A ) NHEM cells were treated with 200 μM PTU or 1mM tyrosine for 7 days for differential pigmentation. (Top) Cell pellet, (bottom) western blot analysis of cell lysates with POLK, HSC70, phosphorylated H2AX, total H2AX and beta actin antibodies. Numbers below the blot correspond to control normalized expression of the indicated protein. Experiments were performed in biological duplicates. ( B ) Immunofluorescence of NHEM treated with PTU or tyrosine with phosphorylated H2AX antibody. Nuclear DNA stained with DAPI (blue) and γH2AX in (red). Experiments were performed with two biological replicates. Scale bar 10 μm. ( C ) Quantitation of mean fluorescence intensity per cell of γH2AX from two biological replicates of NHEM treated with PTU or tyrosine (shown in B). Ordinary one-way ANOVA was performed for multiple comparisons. Adjusted P values: * P -value < 0.05, **** P -value < 0.0001. ( D ) PTU and tyrosine treated NHEM cells were subjected to single cell electrophoresis and comet analysis (alkaline comet assay). Mean tail moment distribution across each population of duplicate biological experiments with atleast 50 comets analyzed is depicted by a violin plot. Ordinary one-way ANOVA was performed. Adjusted P values: ** P -value < 0.001, **** P -value < 0.00001. ( E ) Heat map of expression (fold change) in mRNA levels of top two translesion polymerases (that were enriched in B16 microarray) (top), and a panel of known DNA replication stress response genes by qRT-PCR analysis in NHEM (Control, PTU or tyrosine treated). Data represented as mean of triplicate biological experiments. ( F ) Western blot analysis of NHEM treated with DMSO or 50 nM AZ20, a selective inhibitor of ATR kinase, for 24 h. Numbers below the blot correspond to control normalized expression of the indicated protein wrt beta-actin. Experiments were performed in biological duplicates. ( G ) mRNA levels of Polk in unpigmented B16 cells mock transfected, or with either control DNA, melanin modified DNA (plasmid DNA was incubated with L-DOPA and tyrosinase and column purified after 24 h) (Mel + DNA), DNA mixed with pre-synthesized melanin and coulmn purified [DNA+(Mel)], in-vitro melanin synthesis ( ex-cellulo l -tyrosine and tyrosinase added to cell media) for 24 h or cells treated with 1 mM DHI (DHI) for 24 h. Bars represent percent mRNA levels compared to control across biological triplicates. Ordinary one-way ANOVA was performed. Adjusted P values: * P -value < 0.05. (Inset) Western blot analysis of B16 cells transfected with only DNA (Con DNA) or melanin-modified DNA (Mel + DNA) with Polκ antibody normalized to HSC70. Experiments were performed in biological triplicates.
Article Snippet: Polκ (ab57070), γH2AX (CST 9718),
Techniques: Western Blot, Expressing, Immunofluorescence, Staining, Quantitation Assay, Fluorescence, Electrophoresis, Alkaline Single Cell Gel Electrophoresis, Microarray, Quantitative RT-PCR, Transfection, Modification, Plasmid Preparation, Incubation, Purification, Synthesized, In Vitro
Journal: Nucleic Acids Research
Article Title: Sustained pigmentation causes DNA damage and invokes translesion polymerase Polκ for repair in melanocytes
doi: 10.1093/nar/gkad704
Figure Lengend Snippet: Silencing of Polκ during pigmentation prevents replication stress response despite elevated DNA damage. ( A ) Cell pellets of control non-targeting (shNT) and Polκ silenced (shPolκ) B16 cells on day 0 (left) and day 7 (right) of pigmentation. ( B ) Immunofluorescence analysis of day 7 pigmented shNT and shPolκ cells with phosphorylated H2AX antibody (puncta labelled in green) and the nucleus is counterstained with DAPI (blue). Scale bars represent 10 μm. ( C ) Quantitation of mean fluorescence intensity of γH2AX (shown in B) from two biological replicates of shNT and shPolκ cells across day 0, 5 and 7 of pigmentation induction. Two-way ANOVA was performed for multiple comparisons. Adjusted P values * P -value < 0.05 *** P -value < 0.0005 **** P -value < 0.00001 ns non-significant. ( D ) shNT and shPolκ expressing pigmented B16 cells were subjected to single cell electrophoresis and comet analysis (alkaline comet) on days 0, 5 and 7 of pigmentation induction. Mean tail moment distribution across each population of duplicate biological experiments with at least 50 comets analyzed is depicted by a violin plot. Two-way ANOVA was performed for multiple comparisons. Adjusted P values, ns non-significant, * P -value < 0.05. ( E ) Growth curve analysis of shNT and shPolκ expressing B16 cells on days 0, 5, 6 and 7 of pigmentation. Each point represents mean ± SEM across biological triplicates. Two-way ANOVA was performed. Adjusted P values: * P -value < 0.05, *** P -value < 0.001. ( F ) Western blot analysis of DNA repair and cell cycle related proteins in shNT and shPolκ cells. Numbers below represent tubulin normalized fold changes wrt shNT. Experiments were performed in biological duplicates. ( G ) shNT and shPolκ expressing B16 cells were injected inside the flank of C57/BL6 mice and allowed to grow as tumors. The volume of the tumor was non-invasively monitored and plotted over time of biological triplicates mean ± SEM. Two-way ANOVA was performed for multiple comparisons. Adjusted P values: * P -value < 0.05. ( H ) Heat map of expression (fold change) in mRNA levels of a panel of known DNA replication stress response genes by qRT-PCR analysis in shNT (day 0-unpigmented and day 7-pigmented) and shPolκ (day 0-unpigmented and day 7-pigmented) B16 cells. ( I ) Western blot images and analysis of p-RPA2 and total RPA2 in shNT and shPolκ B16 cells (day 0 unpigmented and day 7 pigmented). Numbers below represent beta-actin normalized fold changes wrt shNT at day 0. Experiments were performed in biological triplicates. ( J ) Analysis of melanoma samples from TCGA data for mRNA expression of POLK (high, low or not detected) segregated into bar plots and proportion of mutations were plotted on y-axis. ( K ) Survival plot of melanoma patients with low or high expression of POLK from TCGA data. Analysis from Human Protein Atlas database. Paired t -test P value 0.017.
Article Snippet: Polκ (ab57070), γH2AX (CST 9718),
Techniques: Immunofluorescence, Quantitation Assay, Fluorescence, Expressing, Electrophoresis, Western Blot, Injection, Quantitative RT-PCR
Journal: Modern pathology : an official journal of the United States and Canadian Academy of Pathology, Inc
Article Title: Analytic Validation of a Clinical-Grade PTEN Immunohistochemistry Assay in Prostate Cancer by Comparison to PTEN FISH
doi: 10.1038/modpathol.2016.88
Figure Lengend Snippet: Prostate cancer cases with discordant PTEN immunohistochemistry and FISH results on initial review. Case #9 : PTEN immunohistochemistry demonstrates very weak cytoplasmic immunostaining with loss of nuclear immunostaining and thus was called negative on initial review, though in retrospect it may be better classified as ambiguous due to weak staining and absence of benign glands for comparison (left). Four-color FISH image from an adjacent section that is representative of all examined cores in this tissue microarray (right) indicates that the PTEN gene does not have a detectable deletion by FISH. The enlarged inset shows that the centromeres, WAPAL, PTEN and FAS gene probes are each present as two copies. Case #10 : PTEN immunohistochemistry image (left) shows heterogeneous PTEN loss in some tumor glands (arrow) but PTEN protein is expressed by majority of other tumor glands in this core. FISH image from an adjacent section (right) was initially read as PTEN intact, but shows a focal area with hemizygous PTEN deletion recognized on re-examination guided by immunohistochemistry. The enlarged inset shows there is only one copy of the red PTEN gene probe (one red signal) and loss of both aqua FAS gene probes. Case #11 : PTEN immunohistochemistry image (left) demonstrates heterogeneous PTEN loss in some tumors glands (arrows) but not in others (arrowheads). FISH image from an adjacent section (right) shows the small area of the section that had a homozygous PTEN deletion on re-examination. The enlarged inset shows that there are no copies of the red PTEN gene probe and one copy of the aqua FAS gene probe, but retention of the adjacent WAPAL and centromere probes.
Article Snippet: Briefly, the protocol uses the Ventana automated staining platform (Ventana Discovery Ultra, Ventana Medical Systems, Tucson, AZ) and a
Techniques: Immunohistochemistry, Immunostaining, Staining, Microarray
Journal: Nucleic Acids Research
Article Title: TDP-43 regulates global translational yield by splicing of exon junction complex component SKAR
doi: 10.1093/nar/gkr1082
Figure Lengend Snippet: GenomeGraph of SKAR as a splice target of TDP-43. HEK293E cells were transfected with control siRNA (scrambled) or treated with siRNA against TDP-43 (siRNA TDP-43 ). Four biological replicates of each group were hybridized on a Human Exon 1.0-ST Gene Chip. Intensity values of microarray hybridizations, single values (gray), mean group intensities of scrambled siRNA (blue) and siRNA TDP-43 (green), are shown as normalized background-corrected logarithmic intensities ( A ) and RMA corrected probe-level data ( B ). Vertical lines separate the 18 individual probe sets covering the POLDIP3/SKAR gene. ( C ) Depicted are the mean group values of the FIRMA score. The fold change of the FIRMA score (FC(F)) is shown in red. ( D ) Genomic representation of the POLDIP3/SKAR gene in orange. Gray lines at the top of this panel indicate localization of the individual probe sets within the genomic coordinates. ( E ) The two Ensembl annotated alternative splice isoforms SKAR α and SKAR β are depicted in blue. SKAR exon 3 is highlighted by a box. ( F ) The SKAR α protein isoform is shown in pink, the RRM domain is shown in dark blue. Highlighted in green is the exon 3 derived part. At the bottom the amino acid sequence of exon 3 is given.
Article Snippet: Moreover, while both isoforms are detected with a
Techniques: Transfection, Microarray, Derivative Assay, Sequencing
Journal: Nucleic Acids Research
Article Title: TDP-43 regulates global translational yield by splicing of exon junction complex component SKAR
doi: 10.1093/nar/gkr1082
Figure Lengend Snippet: Validation of SKAR alternative splicing upon transient silencing of TDP-43. TDP-43 was either silenced transiently by siRNA treatment ( A , C , E and G ) or stably by use of lentiviral particles encoding for a TDP-43-specific shRNA followed by the selection of single cell clones ( B , D and F ). For transient silencing, HEK293E cells were either mock treated (m) or transiently transfected with scrambled control siRNA (scr), with one of four different TDP-43-specific siRNAs (siRNA TDP-43 A-D) or with one of five specific siRNAs against FUS (siRNA FUS A-E), as indicated. (A–D) Total RNA was extracted and analyzed by RT–PCR. (A and B) Semi-quantitative RT–PCR was performed with primer pairs specific for TDP-43, SKAR (ex2–ex4), SKAR α (ex2|3–ex4) and SKAR β (ex2|4–ex4). (C and D) Real-time PCR was performed with primer pairs against SKAR α (ex2|3–ex4) (white bars), SKAR β (ex2|4–ex4) (gray bars) and total SKAR (ex5|6–ex7). PBGD was used as a housekeeping gene. Resulting relative SKARα/PBGD, SKARβ/PBGD and total SKAR/PBGD ratios were recalculated into absolute copy values and normalized to total SKAR values. Shown are the mean values of five independent experiments ± SEM. * P < 0.05; ** P < 0.005; *** P < 0.0005; ns = not significant. Original qRT–PCR data is presented in Supplementary Figure S1A and S1B , respectively. (E–G) Protein was extracted, electrophoresed and resulting western blots probed with antibodies specific for TDP-43, SKAR (both isoforms) and SKAR α. GAPDH was used as a loading control. FUS silencing efficiency was controlled by use of an anti-FUS antibody. Note, that, depending on the primer pair and antibody used, SKAR RNA and protein isoforms, respectively, are visualized as two bands with different molecular weights. The upper band represents SKAR α, the lower corresponds to SKAR β, as indicated.
Article Snippet: Moreover, while both isoforms are detected with a
Techniques: Stable Transfection, shRNA, Selection, Clone Assay, Transfection, Reverse Transcription Polymerase Chain Reaction, Quantitative RT-PCR, Real-time Polymerase Chain Reaction, Western Blot
Journal: Nucleic Acids Research
Article Title: TDP-43 regulates global translational yield by splicing of exon junction complex component SKAR
doi: 10.1093/nar/gkr1082
Figure Lengend Snippet: SKAR alternative splicing is dependent on RRM1 of TDP-43. ( A ) Stably silenced HEK293E cells (shRNA TDP-43 ) or transiently silenced HEK293 cells (siRNA TDP-43 ) were transiently transfected with either control vector (−) or Flag-TDP-43 variants (wt, ΔRRM1, ΔRRM2, ΔRRM1/2, FFLL and ΔGRD or disease-associated mutations, as indicated). Parental HEK293E cells or cells treated with a scrambled siRNA (−) were used as an internal control. (A) Total RNA was extracted and subjected to semi-quantitative RT–PCR using primer pairs amplifying total TDP-43, endogenous TDP-43, total SKAR (ex2–ex4), SKAR α (ex2|3–ex4), SKAR β (ex2|4–ex4) and PBGD as a housekeeping gene. ( B and E ) RNA was extracted and real-time PCR performed with primer pairs against SKAR α (ex2|3–ex4) (white bars), SKAR β (ex2|4–ex4) (gray bars) and total SKAR (ex5|6–ex7). PBGD was used as a housekeeping gene. Resulting relative SKAR α/PBGD, SKAR β/PBGD and total SKAR/PBGD ratios were re-calculated into absolute copy values and normalized to total SKAR values. Original qRT data is presented in Supplementary Figure S1C and S1D , respectively. * P < 0.05; ** P < 0.005; *** P < 0.0005; ns = not significant. ( C and D ) Protein was extracted, electrophoresed and resulting western blots probed with anti-TDP-43, anti-Flag and anti-SKAR antibodies. GAPDH was used as a loading control. (D) Shown are the mean values ± SEM of densitometric analysis of three independent experiments. * P < 0.05; ** P < 0.005; ns = not significant.
Article Snippet: Moreover, while both isoforms are detected with a
Techniques: Stable Transfection, shRNA, Transfection, Plasmid Preparation, Quantitative RT-PCR, Real-time Polymerase Chain Reaction, Western Blot
Journal: Nucleic Acids Research
Article Title: TDP-43 regulates global translational yield by splicing of exon junction complex component SKAR
doi: 10.1093/nar/gkr1082
Figure Lengend Snippet: A repeat containing RNA stretch 3′ of exon 3 is necessary for TDP-43 and SKAR splicing. ( A ) Schematic representation of constructs used for refined RNA crosslinking assays. ( B ) Indicated fragments of SKAR DNA were in vitro transcribed/biotinylated and mixed with lysates form HEK293E cells transiently transfected with Flag-TDP-43 wt or FFLL. No RNA was added to control samples. Samples were UV crosslinked and precipitated with streptavidin-agarose. Western blots of streptavidin precipitates (left panel) were probed with anti-TDP-43 and anti-Flag to visualize co-precipitated endogenous and exogenous TDP-43. Biotinylated SKAR RNAs pulled down transfected as well as endogenous TDP-43 wt but not FFLL. Protein inputs (right panel) of HEK293E lysates confirmed even transfection efficiencies. ( C ) Schematic representation of the three repeat motifs and mutagenized variants within the SKAR pre-RNA 3′ of exon 3. ( D ) Non-mutated or mutagenized variants of SKAR DNA part-5 were in vitro transcribed/biotinylated and mixed with lysates form HEK293E cells transiently transfected with Flag-TDP-43 wt. No RNA was added to control samples. Samples were UV-crosslinked and precipitated with streptavidin-agarose. Western blots of streptavidin precipitates were probed with anti-TDP-43 and anti-Flag to visualize coprecipitated endogenous and exogenous TDP-43. ( E ) Schematic representation of the used SKAR minigene construct pTB SKAR part-3/4/5. Primer annealing sites are indicated by arrows. ( F and G ) HEK293E cells were transfected with pTB SKAR part-3/4/5 variants, as indicated. RNA was extracted and used for RT–PCR using primers for pTB and PBGD as a housekeeping gene. (F) Representative RT–PCR is shown. (G) Shown are the results (mean values ± SEM) of densitometric analysis of seven independent experiments calculated as the ratio of SKAR α to SKAR β. * P < 0.05; *** P < 0.0005.
Article Snippet: Moreover, while both isoforms are detected with a
Techniques: Construct, In Vitro, Transfection, Western Blot, Reverse Transcription Polymerase Chain Reaction
Journal: Nucleic Acids Research
Article Title: TDP-43 regulates global translational yield by splicing of exon junction complex component SKAR
doi: 10.1093/nar/gkr1082
Figure Lengend Snippet: SKAR β is more active than SKAR α and leads to enhanced translation and increased cell size. ( A ) HEK293E cells were treated with control siRNA or transfected with siRNA against SKAR or TDP-43 as indicated. Stably silenced siRNA TDP-43 and transiently transfected HEK293E cells were transfected with either control vector (−) or plasmids encoding for Myc-SKAR α, Myc-SKAR β or Flag-TDP-43 wt, as indicated. Cells were serum starved for 16 h. After 6 h serum-stimulation cells were harvested, protein extracted and electrophoresed. Resulting western blots were probed with anti-SKAR, anti-phospho S6K1 (Thr389), anti-S6K1, anti-phospho S6 (Ser235/236), anti-S6, anti-phospho Akt substrate (RXRXXS/T) and anti-TDP-43 antibodies. GAPDH was used as a loading control. Transfection of SKAR β or depletion of TDP-43 results in overall stronger phospho-signal compared to SKAR α. ( B ) Schematic representation of luciferase constructs used for analysis of translation. ( C–G ) HEK293E cells were transfected with either Myc-SKAR α or Myc-SKAR β (C) or with control siRNA (scr) and individual siRNA TDP-43 A–D, as indicated (D–G). (C–E) Before DNA/siRNA transfection, cells were transfected with firefly control vector plus either intron-containing or intron-less Renilla luciferase constructs. (C and D) Luciferase activity was measured and normalized to control treated HEK293E cells. Shown are the mean values ± SEM of five independent experiments. * P < 0.05. Western blotting confirmed equal expression of Myc-SKAR α and Myc-SKAR β (C, right panel). (E) qRT–PCR confirmed equal RNA levels of Renilla and firefly luciferase in non-silenced and silenced HEK293E cells. (F) Cells were counted and equal numbers of cells was collected. Protein amount was determined using BCA protein assay. Shown are the mean values ± SEM of five independent experiments. * P < 0.05. (G) Cell size was analyzed by flow cytometry, monitoring the forward scatter parameter. Shown are the mean values ± SEM of five independent experiments. * P < 0.05; ** P < 0.005.
Article Snippet: Moreover, while both isoforms are detected with a
Techniques: Transfection, Stable Transfection, Plasmid Preparation, Western Blot, Luciferase, Construct, Activity Assay, Expressing, Quantitative RT-PCR, Bicinchoninic Acid Protein Assay, Flow Cytometry
Journal: Journal of Experimental & Clinical Cancer Research : CR
Article Title: Targeting CRABP-II overcomes pancreatic cancer drug resistance by reversing lipid raft cholesterol accumulation and AKT survival signaling
doi: 10.1186/s13046-022-02261-0
Figure Lengend Snippet: CRABP-II regulates cholesterol metabolic genes expression through cooperation with HuR. ( A ) Molecular and cellular function analysis by IPA software (Qiagen) based on gene expression microarray profiling. The altered lipid synthesis and accumulation functions upon CRABP-II knockout were listed. ( B ) Heat map of altered cholesterol metabolic genes. ( C, D, E ) Cholesterol metabolic genes expression assessed by Q-PCR. ( F ) Correlation between cholesterol metabolic genes and CRABP-II expression in human pancreatic cancer specimens by Pearson’s product-moment correlation coefficient analysis (PPMCC). Data shown here are combination of Pei Pancreas and Badea Pancrease datasets ( n = 75) from Oncomine. ( G ) Interaction between CRABP-II and HuR identified by co-immuprecipitation (co-IP). GR4000 cell lysis was incubated with anti-CRABP-II rabbit polyclonal antibody and the pull down proteins were separated and blotted with anti-HuR mouse monoclonal antibody. ( H ) Half-life of SREBP-1c mRNA assessed by actinomycin D treatment following with Q-PCR. ( I ) RNA-immunoprecipitation (RIP). The down pulled SREBP-1c mRNA from flagged-CRABP-II transfected CIIKO cells and empty vector transfected cells were assessed by Q-PCR. The actin mRNA was used as control. The experiment was repeated three times and the error bars present standard deviation (SD). **, p < 0.01
Article Snippet: Antibodies used in this study include: CRABP-II mouse mAbs (Millipore, MAB5488),
Techniques: Expressing, Cell Function Assay, Software, Gene Expression, Microarray, Knock-Out, Co-Immunoprecipitation Assay, Lysis, Incubation, RNA Immunoprecipitation, Transfection, Plasmid Preparation, Control, Standard Deviation
Journal: Laboratory investigation; a journal of technical methods and pathology
Article Title: Neuropilin 1 expression correlates with differentiation status of epidermal cells and cutaneous squamous cell carcinomas.
doi: 10.1038/labinvest.2014.66
Figure Lengend Snippet: Figure 2 Neuropilin 1 (NRP1) expression in human squamous cell carcinoma (SCC) patient samples correlates with degree of differentiation. (a) Human skin cancer tissue microarray A216 was stained by immunohistochemistry (IHC) for NRP1 protein expression. Illustrated is the scan of the entire slide showing 102 sections/biopsies. Six samples are marked with a line on the left and are shown at higher magnification below. (b) Scan of the entire section of highly differentiated (HD) human SCC sample stained by IHC for NRP1. Tumor shows high expression of NRP1 (brown color). (c) Selected samples from microarray in a demonstrate high NRP1 expression in normal (NR) epidermis and HD SCC samples, medium NRP1 expression in moderately differentiated (MD) samples, and the lack of NRP1 expression in poorly differentiated (PD) samples. Scale bar ¼ 200 mm.
Article Snippet: Membranes were blocked with non-fat milk and incubated with rabbit polyclonal anti-human NRP1 (44-2) (recognizing amino acids DDSKRKAKSFEGNNNYD in the b2 domain; not commercial)18 or goat
Techniques: Expressing, Microarray, Staining, Immunohistochemistry
Journal: Laboratory investigation; a journal of technical methods and pathology
Article Title: Neuropilin 1 expression correlates with differentiation status of epidermal cells and cutaneous squamous cell carcinomas.
doi: 10.1038/labinvest.2014.66
Figure Lengend Snippet: Figure 3 Differentiated cells of human squamous cell carcinoma (SCC) xenografts in mice express the highest levels of neuropilin 1 (NRP1). Three human SCC cell lines were grown in nude mice: well-differentiated SCC13 (a, d, and g), moderately differentiated DJM1 (b, e, and h), and poorly differentiated A431 (c, f, and i). Paraffin sections of tumors were stained by immunohistochemistry (IHC) for human NRP1 (a–c), human keratin 1 (K1) (d–f), and human K14 (g–i). Note that human NRP1 antibodies do not stain mouse blood vessels. NRP1 is absent from poorly differentiated human SCC cells (arrows in a and d). Scale bar ¼ 100 mm.
Article Snippet: Membranes were blocked with non-fat milk and incubated with rabbit polyclonal anti-human NRP1 (44-2) (recognizing amino acids DDSKRKAKSFEGNNNYD in the b2 domain; not commercial)18 or goat
Techniques: Staining, Immunohistochemistry
Journal: Laboratory investigation; a journal of technical methods and pathology
Article Title: Neuropilin 1 expression correlates with differentiation status of epidermal cells and cutaneous squamous cell carcinomas.
doi: 10.1038/labinvest.2014.66
Figure Lengend Snippet: Figure 4 Nrp1 is expressed in normal mouse epithelium and murine squamous cell carcinoma (SCC). Transgenic K14-HPV16 mice develop spontaneous and progressive dysplasia and SCC. Paraffin sections of the ears from K14-HPV16 mice were obtained before overt disease (normal) (a, d, and g), from dysplastic ears (b, e, and h), or from SCC tumors (c, f, and i). Sections were stained with hematoxylin and eosin (H&E) (a–c) or immunostained for mouse Nrp1 (brown color) (d–f), or mouse CD31 (brown color) (g–i). Nrp1 expression increased in dysplastic lesions (e) and was expressed in differentiated areas of SCC (f). Microvessel density progressively increased from normal/hyperplastic epidermis (g) to dysplasia (h), to SCC (i). Some sections (d–i) were counterstained with hematoxylin (blue color). All images were taken at 200 magnification; scale bars ¼ 100 mm. Notice the ears increase dramatically in thickness.
Article Snippet: Membranes were blocked with non-fat milk and incubated with rabbit polyclonal anti-human NRP1 (44-2) (recognizing amino acids DDSKRKAKSFEGNNNYD in the b2 domain; not commercial)18 or goat
Techniques: Transgenic Assay, Staining, Expressing
Journal: Laboratory investigation; a journal of technical methods and pathology
Article Title: Neuropilin 1 expression correlates with differentiation status of epidermal cells and cutaneous squamous cell carcinomas.
doi: 10.1038/labinvest.2014.66
Figure Lengend Snippet: Figure 6 Nrp1 mRNA expression increased following UVB irradiation. Paraffin sections of mouse ears from normal, non-irradiated (control) (a and d), or UVB irradiated mice (b, c, e and f). Sections were stained with hematoxylin and eosin (H&E) (a–c) or by ISH with probes to mouse Nrp1 mRNA (purple color). Nrp1 expression was increased in epidermal cells and dermal vessels after UVB irradiation (e and f). Nrp1 mRNA expression was seen only in suprabasal cells of the epidermis. There was low Nrp1 expression in normal ears at short chromogen incubations (d) but the expression was detectable when incubation time was increased (not shown). All images were taken at 200 magnification; scale bars ¼ 100 mm. Notice the ears increase dramatically in thickness.
Article Snippet: Membranes were blocked with non-fat milk and incubated with rabbit polyclonal anti-human NRP1 (44-2) (recognizing amino acids DDSKRKAKSFEGNNNYD in the b2 domain; not commercial)18 or goat
Techniques: Expressing, Irradiation, Control, Staining, Incubation
Journal: Laboratory investigation; a journal of technical methods and pathology
Article Title: Neuropilin 1 expression correlates with differentiation status of epidermal cells and cutaneous squamous cell carcinomas.
doi: 10.1038/labinvest.2014.66
Figure Lengend Snippet: Figure 7 Neuropilin 1 (NRP1) expression is regulated by differentiation and growth factors in vitro. (a–c) Primary mouse keratinocytes were isolated and cultured from P3 Balb/c mice. Cells were grown in (a) low-calcium growth media or differentiating high-calcium media for (b) 1 to (c) 3 days. Phase-contrast microscopy demonstrated changes in cell shape and morphology. (d) Western blotting of protein lysates from primary mouse keratinocytes cultured in low- (lo ¼ 0.05 mM) or high- (hi ¼ 0.12 mM) calcium media. Nrp1 protein is upregulated in cells grown in the differentiating media. (e and f) Northern blotting of mRNA from primary mouse keratinocytes cultured in (e) high-calcium media or (f) retinoic acid (RA) for various time points. Nrp1 was induced in cells grown for 1 day in high-calcium media or 4 days in RA. (g and h) Northern blotting of mRNA from primary mouse keratinocytes (g) or human Hacat cells (h) incubated for various times in growth factor. Addition of HB-EGF or epidermal growth factor (EGF) upregulated NRP1 expression in keratinocytes. (i) I125-VEGF165 cross-linking to NRP1 on Hacat cells increased after pretreatment in HB-EGF (left panel). I125-VEGF165 cross-linking to NRP1 on Hacat cells was competed in the presence of excess SEMA3A protein (right panel). Arrowheads point to the cross- linked complex of NRP1/VEGF.
Article Snippet: Membranes were blocked with non-fat milk and incubated with rabbit polyclonal anti-human NRP1 (44-2) (recognizing amino acids DDSKRKAKSFEGNNNYD in the b2 domain; not commercial)18 or goat
Techniques: Expressing, In Vitro, Isolation, Cell Culture, Microscopy, Western Blot, Northern Blot, Incubation