genome wide dna methylation microarray data Search Results


99
Qiagen rneasy mini kit

Rneasy Mini Kit, supplied by Qiagen, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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New England Biolabs msres
If <t>allele-specific</t> <t>DNA</t> methylation (ASM) around heterozygous SNP A/C exists (which is hypermethylated around A allele and hypomethylated around C allele), SNP is called A/C in micro array before digestion and A/A after digestion by <t>MSREs.</t> Thus, the probes heterozygous in uncut genomic DNA and homozygous in MSREs-digested DNA indicate ASM around SNP. Because we expect methylation skew between two alleles, all heterozygous SNPs which the ratio of signal intensities given two alleles changed after digestion should be extracted. SNP, single-nucleotide polymorphisms; MSREs, methylation-sensitive restriction enzymes, which contain HpaII ( 5′-CˆCGG-3′ ), HhaI ( 5′-GCGˆC-3′ ), and AciI ( 5′-CˆCGC-3′ ).
Msres, supplied by New England Biolabs, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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WholeGenome LLC wholegenome transcriptome
If <t>allele-specific</t> <t>DNA</t> methylation (ASM) around heterozygous SNP A/C exists (which is hypermethylated around A allele and hypomethylated around C allele), SNP is called A/C in micro array before digestion and A/A after digestion by <t>MSREs.</t> Thus, the probes heterozygous in uncut genomic DNA and homozygous in MSREs-digested DNA indicate ASM around SNP. Because we expect methylation skew between two alleles, all heterozygous SNPs which the ratio of signal intensities given two alleles changed after digestion should be extracted. SNP, single-nucleotide polymorphisms; MSREs, methylation-sensitive restriction enzymes, which contain HpaII ( 5′-CˆCGG-3′ ), HhaI ( 5′-GCGˆC-3′ ), and AciI ( 5′-CˆCGC-3′ ).
Wholegenome Transcriptome, supplied by WholeGenome LLC, 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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Atlas Antibodies sox11
The molecular structure of <t>SOX11.</t> The SOX11 protein is composed of 441 amino acids. SOX11 contains two functional domains, the N-terminal HMG domain and the conserved TAD. SOX11, sex-determining region Y-related high-mobility-group box transcription factor 11; HMG, high mobility group; TAD, C-terminal transactivation domain.
Sox11, supplied by Atlas Antibodies, 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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Vazyme Biotech Co e7335 trueprep dna library prep kit v2 for illumina vazyme biotech
The molecular structure of <t>SOX11.</t> The SOX11 protein is composed of 441 amino acids. SOX11 contains two functional domains, the N-terminal HMG domain and the conserved TAD. SOX11, sex-determining region Y-related high-mobility-group box transcription factor 11; HMG, high mobility group; TAD, C-terminal transactivation domain.
E7335 Trueprep Dna Library Prep Kit V2 For Illumina Vazyme Biotech, supplied by Vazyme Biotech Co, 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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86
Thermo Fisher gene exp ace2 hs01085333 m1
DNA methylation analysis of 19 and 8 CpG probes located in the ACE and <t>ACE2</t> genes, respectively. ( A ) Minor allele frequency in European and North American populations of SNPs located in the probes under analysis (see the respective data in Supplementary Table 2). ( B ) Boxplot of all possible Pearson’s correlation coefficients (y axis) between the M-values of the probes under analysis. Horizontal dashed line represents the situation of lack of correlation. ( C ) Adjusted p-values for the overall association between each probe and ME/CFS. Adjusted p-values were calculated according to the Benjamini-Hochberg procedure with a false discovery rate of 5% (dashed line). Grey areas in the plots represent the TSS of the genes. ( D ) and ( E ) The same analyses as shown in C but for women and men separately.
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sw480  (ATCC)
99
ATCC sw480
( a ) Cell proliferation and ( b ) cell viability alterations of HT-29 and <t>SW480</t> colorectal cancer cell lines following different folic acid (FA) supplies. Sulforhodamine B (SRB) was used for cell proliferation detection (* p ≤ 0.05, *** p ≤ 0.001), while cell viability data were obtained by alamarBlue assay (** p ≤ 0.01). FA-depleted cells were kept in media containing 0 ng/mL FA, whereas treated cells were exposed to 100 and 10,000 ng/mL FA for 72 h. The percentages of cell proliferation and viability were given relative to samples kept in the normal growth media. FA: folic acid.
Sw480, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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kg1a  (DSMZ)
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DSMZ kg1a
Figure 4. Methylation-specific PCR results. MS-PCR results for p15/CDKN2b and p16/CDKN2a after bisulfite treatment with wild-type primer (lanes 1 and 4), methylated (lanes 2 and 5) and unmethylated (lanes 3 and 6) primer sets on genomic DNA extracted from cell lines HL-60 and <t>KG1a.</t> m ¼ marker; amplified fragment length ¼ 150 bp.
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Addgene inc recombinant dna pmscv cre puro ires gfp addgene plasmid
Figure 4. Methylation-specific PCR results. MS-PCR results for p15/CDKN2b and p16/CDKN2a after bisulfite treatment with wild-type primer (lanes 1 and 4), methylated (lanes 2 and 5) and unmethylated (lanes 3 and 6) primer sets on genomic DNA extracted from cell lines HL-60 and <t>KG1a.</t> m ¼ marker; amplified fragment length ¼ 150 bp.
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Proteintech dach1 protein
Fig. 2 <t>DACH1</t> deletion PCa enhances AR signaling. A Interrogation of human PCa gene expression data [26], showing candidate genetic drivers ERG, ETV1/ETV4/FLI1, SPOP, FOXA1, and unknown. Samples with DACH1 homozygous (deep) genetic deletions (29/333) are shown as an additional subtype. The AR score (the average of the AR target gene expression) refers to a group of AR-responsive genes [26], and together with the expression Z-score of the AR target genes, are shown as colorimetric scales. The AR score-based gene names are shown. The androgen receptor (AR) activity, inferred by the induction of AR target genes, was increased in DACH1 homozygous (‘deep’) deletion PCa compared with normal (P = 2 × 10−5 by t-test) and ERG mutation groups (P = 0.003 by t-test). B AR mRNA and AR protein levels, shown for each DACH1 deletion sample, were not significantly different. C The iCluster [29], mRNA cluster, and SCNA (somatic copy-number alteration), and DNA methylation status are shown for the PCa classified by the corresponding gene deletion subtypes. D DACH1 homozygous deletions were enriched for iCluster 2 and 3 [29], mRNA cluster 2 (P = 0.0003 by Fisher exact test, SCNA (“more” somatic copy-number alteration, P = 0.0004 by Fisher exact test), but not for DNA methylation.
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Epigenomics ag dna methylation microarray
Fig. 2 <t>DACH1</t> deletion PCa enhances AR signaling. A Interrogation of human PCa gene expression data [26], showing candidate genetic drivers ERG, ETV1/ETV4/FLI1, SPOP, FOXA1, and unknown. Samples with DACH1 homozygous (deep) genetic deletions (29/333) are shown as an additional subtype. The AR score (the average of the AR target gene expression) refers to a group of AR-responsive genes [26], and together with the expression Z-score of the AR target genes, are shown as colorimetric scales. The AR score-based gene names are shown. The androgen receptor (AR) activity, inferred by the induction of AR target genes, was increased in DACH1 homozygous (‘deep’) deletion PCa compared with normal (P = 2 × 10−5 by t-test) and ERG mutation groups (P = 0.003 by t-test). B AR mRNA and AR protein levels, shown for each DACH1 deletion sample, were not significantly different. C The iCluster [29], mRNA cluster, and SCNA (somatic copy-number alteration), and DNA methylation status are shown for the PCa classified by the corresponding gene deletion subtypes. D DACH1 homozygous deletions were enriched for iCluster 2 and 3 [29], mRNA cluster 2 (P = 0.0003 by Fisher exact test, SCNA (“more” somatic copy-number alteration, P = 0.0004 by Fisher exact test), but not for DNA methylation.
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Image Search Results


Journal: Cell Reports

Article Title: Chromatin accessibility governs the differential response of cancer and T cells to arginine starvation

doi: 10.1016/j.celrep.2021.109101

Figure Lengend Snippet:

Article Snippet: For microarray analysis, RNA was extracted from THP1 or stimulated human CD4+ T cells using the RNeasy Mini kit (QIAGEN).

Techniques: Recombinant, Multiplex sample analysis, Cell Isolation, Activation Assay, Staining, Flow Cytometry, Expressing, Reverse Transcription, Transfection, TA Cloning, Plasmid Preparation, Methylation, Immunoprecipitation, Purification, DNA Library Preparation, Library Quantification, Control, Sequencing, Methylation Sequencing, Amplification, Software

If allele-specific DNA methylation (ASM) around heterozygous SNP A/C exists (which is hypermethylated around A allele and hypomethylated around C allele), SNP is called A/C in micro array before digestion and A/A after digestion by MSREs. Thus, the probes heterozygous in uncut genomic DNA and homozygous in MSREs-digested DNA indicate ASM around SNP. Because we expect methylation skew between two alleles, all heterozygous SNPs which the ratio of signal intensities given two alleles changed after digestion should be extracted. SNP, single-nucleotide polymorphisms; MSREs, methylation-sensitive restriction enzymes, which contain HpaII ( 5′-CˆCGG-3′ ), HhaI ( 5′-GCGˆC-3′ ), and AciI ( 5′-CˆCGC-3′ ).

Journal: PLoS ONE

Article Title: Allele-specific DNA methylation of disease susceptibility genes in Japanese patients with inflammatory bowel disease

doi: 10.1371/journal.pone.0194036

Figure Lengend Snippet: If allele-specific DNA methylation (ASM) around heterozygous SNP A/C exists (which is hypermethylated around A allele and hypomethylated around C allele), SNP is called A/C in micro array before digestion and A/A after digestion by MSREs. Thus, the probes heterozygous in uncut genomic DNA and homozygous in MSREs-digested DNA indicate ASM around SNP. Because we expect methylation skew between two alleles, all heterozygous SNPs which the ratio of signal intensities given two alleles changed after digestion should be extracted. SNP, single-nucleotide polymorphisms; MSREs, methylation-sensitive restriction enzymes, which contain HpaII ( 5′-CˆCGG-3′ ), HhaI ( 5′-GCGˆC-3′ ), and AciI ( 5′-CˆCGC-3′ ).

Article Snippet: DNA from patients was digested using a cocktail of three MSREs: HpaII (5′-CˆCGG-3′), HhaI (5′-GCGˆC-3′), and AciI (5′-CˆCGC-3′) (New England BioLabs, Ipswich, USA), which in combination interrogate the methylation status of ~32.4% of CpG sites in the human genome [ ].

Techniques: DNA Methylation Assay, Microarray, Methylation

SNP, single-nucleotide polymorphism; MSRE, methylation-sensitive restriction enzyme; RAS, relative allele score; IBD, inflammatory bowel disease; (G), genomic DNA; (D), DNA digested MSREs; (U), whole-genome-amplified fully unmethylated DNA digested MSREs.

Journal: PLoS ONE

Article Title: Allele-specific DNA methylation of disease susceptibility genes in Japanese patients with inflammatory bowel disease

doi: 10.1371/journal.pone.0194036

Figure Lengend Snippet: SNP, single-nucleotide polymorphism; MSRE, methylation-sensitive restriction enzyme; RAS, relative allele score; IBD, inflammatory bowel disease; (G), genomic DNA; (D), DNA digested MSREs; (U), whole-genome-amplified fully unmethylated DNA digested MSREs.

Article Snippet: DNA from patients was digested using a cocktail of three MSREs: HpaII (5′-CˆCGG-3′), HhaI (5′-GCGˆC-3′), and AciI (5′-CˆCGC-3′) (New England BioLabs, Ipswich, USA), which in combination interrogate the methylation status of ~32.4% of CpG sites in the human genome [ ].

Techniques: Methylation, Amplification

The molecular structure of SOX11. The SOX11 protein is composed of 441 amino acids. SOX11 contains two functional domains, the N-terminal HMG domain and the conserved TAD. SOX11, sex-determining region Y-related high-mobility-group box transcription factor 11; HMG, high mobility group; TAD, C-terminal transactivation domain.

Journal: Therapeutic Advances in Medical Oncology

Article Title: SOX11: friend or foe in tumor prevention and carcinogenesis?

doi: 10.1177/1758835919853449

Figure Lengend Snippet: The molecular structure of SOX11. The SOX11 protein is composed of 441 amino acids. SOX11 contains two functional domains, the N-terminal HMG domain and the conserved TAD. SOX11, sex-determining region Y-related high-mobility-group box transcription factor 11; HMG, high mobility group; TAD, C-terminal transactivation domain.

Article Snippet: MCL , 53 , IHC , Rabbit polyclonal (Atlas Antibodies AB) , SOX11-negative patients show worse prognosis and shorter OS. , Wang et al. .

Techniques: Functional Assay

Overview of  SOX11  function reported in diverse types of cancer.

Journal: Therapeutic Advances in Medical Oncology

Article Title: SOX11: friend or foe in tumor prevention and carcinogenesis?

doi: 10.1177/1758835919853449

Figure Lengend Snippet: Overview of SOX11 function reported in diverse types of cancer.

Article Snippet: MCL , 53 , IHC , Rabbit polyclonal (Atlas Antibodies AB) , SOX11-negative patients show worse prognosis and shorter OS. , Wang et al. .

Techniques: Expressing, Over Expression, Biomarker Discovery, Migration, Methylation, DNA Methylation Assay

Overall carcinogenic actions of SOX11 on the hallmarks of tumor biology. SOX11 exerts tumor-stimulative effects through increasing cell proliferation, repressing cell differentiation, inducing angiogenesis, and promoting metastasis. BCL6, B-cell lymphoma 6; BNIP3, B-cell lymphoma 2 (BCL2)/adenovirus E1B 19 kDa protein-interacting protein 3; CIC, cancer-initiating cell; PAX5, Paired box protein 5; PDGFA, platelet-derived growth factor A; SETMAR, SET domain and mariner transposase fusion gene; SOX11, Sex-determining region Y-related high-mobility-group box transcription factor 11; TANK, TRAF family member-associated NF-κB activator.

Journal: Therapeutic Advances in Medical Oncology

Article Title: SOX11: friend or foe in tumor prevention and carcinogenesis?

doi: 10.1177/1758835919853449

Figure Lengend Snippet: Overall carcinogenic actions of SOX11 on the hallmarks of tumor biology. SOX11 exerts tumor-stimulative effects through increasing cell proliferation, repressing cell differentiation, inducing angiogenesis, and promoting metastasis. BCL6, B-cell lymphoma 6; BNIP3, B-cell lymphoma 2 (BCL2)/adenovirus E1B 19 kDa protein-interacting protein 3; CIC, cancer-initiating cell; PAX5, Paired box protein 5; PDGFA, platelet-derived growth factor A; SETMAR, SET domain and mariner transposase fusion gene; SOX11, Sex-determining region Y-related high-mobility-group box transcription factor 11; TANK, TRAF family member-associated NF-κB activator.

Article Snippet: MCL , 53 , IHC , Rabbit polyclonal (Atlas Antibodies AB) , SOX11-negative patients show worse prognosis and shorter OS. , Wang et al. .

Techniques: Cell Differentiation, Derivative Assay

Different prognostic significance of  SOX11  in tumor cases.

Journal: Therapeutic Advances in Medical Oncology

Article Title: SOX11: friend or foe in tumor prevention and carcinogenesis?

doi: 10.1177/1758835919853449

Figure Lengend Snippet: Different prognostic significance of SOX11 in tumor cases.

Article Snippet: MCL , 53 , IHC , Rabbit polyclonal (Atlas Antibodies AB) , SOX11-negative patients show worse prognosis and shorter OS. , Wang et al. .

Techniques: Expressing, Microarray, Over Expression

DNA methylation analysis of 19 and 8 CpG probes located in the ACE and ACE2 genes, respectively. ( A ) Minor allele frequency in European and North American populations of SNPs located in the probes under analysis (see the respective data in Supplementary Table 2). ( B ) Boxplot of all possible Pearson’s correlation coefficients (y axis) between the M-values of the probes under analysis. Horizontal dashed line represents the situation of lack of correlation. ( C ) Adjusted p-values for the overall association between each probe and ME/CFS. Adjusted p-values were calculated according to the Benjamini-Hochberg procedure with a false discovery rate of 5% (dashed line). Grey areas in the plots represent the TSS of the genes. ( D ) and ( E ) The same analyses as shown in C but for women and men separately.

Journal: medRxiv

Article Title: The SARS-CoV-2 receptor angiotensin-converting enzyme 2 (ACE2) in Myalgic Encephalomyelitis/Chronic Fatigue Syndrome: analysis of high-throughput epigenetic and gene expression studies

doi: 10.1101/2021.03.23.21254175

Figure Lengend Snippet: DNA methylation analysis of 19 and 8 CpG probes located in the ACE and ACE2 genes, respectively. ( A ) Minor allele frequency in European and North American populations of SNPs located in the probes under analysis (see the respective data in Supplementary Table 2). ( B ) Boxplot of all possible Pearson’s correlation coefficients (y axis) between the M-values of the probes under analysis. Horizontal dashed line represents the situation of lack of correlation. ( C ) Adjusted p-values for the overall association between each probe and ME/CFS. Adjusted p-values were calculated according to the Benjamini-Hochberg procedure with a false discovery rate of 5% (dashed line). Grey areas in the plots represent the TSS of the genes. ( D ) and ( E ) The same analyses as shown in C but for women and men separately.

Article Snippet: Afterwards cDNA was prepared by reverse transcription (High-Capacity cDNA Reverse Transcription Kit, Applied Biosystems, cat. nr. 4368814) and real-time PCR was performed using TaqMan® Universal PCR Master Mix (cat. nr. 4305719) and TaqMan® Gene Expression Assays (cat. nr. 4331182) for ACE (Hs00174179_m1), ACE2 (Hs01085333_m1) and the housekeeping gene HPRT1 (Hs02800695_m1) (Applied Biosystems).

Techniques: DNA Methylation Assay

Boxplots per study, group and gender of the M-values referring to probes identified in Figures 1C and 1D. ( A) Significant probes located in ACE . ( B ) Significant probe located in ACE2 .

Journal: medRxiv

Article Title: The SARS-CoV-2 receptor angiotensin-converting enzyme 2 (ACE2) in Myalgic Encephalomyelitis/Chronic Fatigue Syndrome: analysis of high-throughput epigenetic and gene expression studies

doi: 10.1101/2021.03.23.21254175

Figure Lengend Snippet: Boxplots per study, group and gender of the M-values referring to probes identified in Figures 1C and 1D. ( A) Significant probes located in ACE . ( B ) Significant probe located in ACE2 .

Article Snippet: Afterwards cDNA was prepared by reverse transcription (High-Capacity cDNA Reverse Transcription Kit, Applied Biosystems, cat. nr. 4368814) and real-time PCR was performed using TaqMan® Universal PCR Master Mix (cat. nr. 4305719) and TaqMan® Gene Expression Assays (cat. nr. 4331182) for ACE (Hs00174179_m1), ACE2 (Hs01085333_m1) and the housekeeping gene HPRT1 (Hs02800695_m1) (Applied Biosystems).

Techniques:

Analysis of ACE / ACE2 -related data from eligible microarray-based GES. ( A) Boxplots of the data from studies based on microarray technology. ( B ) Forest plot for the study-specific and pooled estimate of the mean log 2 fold change between patients with ME/CFS and healthy controls using data shown in A.

Journal: medRxiv

Article Title: The SARS-CoV-2 receptor angiotensin-converting enzyme 2 (ACE2) in Myalgic Encephalomyelitis/Chronic Fatigue Syndrome: analysis of high-throughput epigenetic and gene expression studies

doi: 10.1101/2021.03.23.21254175

Figure Lengend Snippet: Analysis of ACE / ACE2 -related data from eligible microarray-based GES. ( A) Boxplots of the data from studies based on microarray technology. ( B ) Forest plot for the study-specific and pooled estimate of the mean log 2 fold change between patients with ME/CFS and healthy controls using data shown in A.

Article Snippet: Afterwards cDNA was prepared by reverse transcription (High-Capacity cDNA Reverse Transcription Kit, Applied Biosystems, cat. nr. 4368814) and real-time PCR was performed using TaqMan® Universal PCR Master Mix (cat. nr. 4305719) and TaqMan® Gene Expression Assays (cat. nr. 4331182) for ACE (Hs00174179_m1), ACE2 (Hs01085333_m1) and the housekeeping gene HPRT1 (Hs02800695_m1) (Applied Biosystems).

Techniques: Microarray

Analysis of ACE and ACE2 gene expression from the German study. ( A) Violin plots of ACE (left side) and ACE2 (right side) mRNA raw data (upper row) and transformed data using the best Box-Cox transformation (lower row). Green-filled plots represent the cohort of healthy controls and rose-filled plots represent the ME/CFS-diagnosed patients. The best values for the Box-Cox transformation parameter λ are 0.303 and 0.225 for ACE and ACE2 mRNA data, respectively. ( B) Scatterplot between ACE and ACE2 gene expression using the Box-Cox-transformed data (Spearman’s correlation coefficient = −0.120).

Journal: medRxiv

Article Title: The SARS-CoV-2 receptor angiotensin-converting enzyme 2 (ACE2) in Myalgic Encephalomyelitis/Chronic Fatigue Syndrome: analysis of high-throughput epigenetic and gene expression studies

doi: 10.1101/2021.03.23.21254175

Figure Lengend Snippet: Analysis of ACE and ACE2 gene expression from the German study. ( A) Violin plots of ACE (left side) and ACE2 (right side) mRNA raw data (upper row) and transformed data using the best Box-Cox transformation (lower row). Green-filled plots represent the cohort of healthy controls and rose-filled plots represent the ME/CFS-diagnosed patients. The best values for the Box-Cox transformation parameter λ are 0.303 and 0.225 for ACE and ACE2 mRNA data, respectively. ( B) Scatterplot between ACE and ACE2 gene expression using the Box-Cox-transformed data (Spearman’s correlation coefficient = −0.120).

Article Snippet: Afterwards cDNA was prepared by reverse transcription (High-Capacity cDNA Reverse Transcription Kit, Applied Biosystems, cat. nr. 4368814) and real-time PCR was performed using TaqMan® Universal PCR Master Mix (cat. nr. 4305719) and TaqMan® Gene Expression Assays (cat. nr. 4331182) for ACE (Hs00174179_m1), ACE2 (Hs01085333_m1) and the housekeeping gene HPRT1 (Hs02800695_m1) (Applied Biosystems).

Techniques: Expressing, Transformation Assay

( a ) Cell proliferation and ( b ) cell viability alterations of HT-29 and SW480 colorectal cancer cell lines following different folic acid (FA) supplies. Sulforhodamine B (SRB) was used for cell proliferation detection (* p ≤ 0.05, *** p ≤ 0.001), while cell viability data were obtained by alamarBlue assay (** p ≤ 0.01). FA-depleted cells were kept in media containing 0 ng/mL FA, whereas treated cells were exposed to 100 and 10,000 ng/mL FA for 72 h. The percentages of cell proliferation and viability were given relative to samples kept in the normal growth media. FA: folic acid.

Journal: Cancers

Article Title: Folic Acid Treatment Directly Influences the Genetic and Epigenetic Regulation along with the Associated Cellular Maintenance Processes of HT-29 and SW480 Colorectal Cancer Cell Lines

doi: 10.3390/cancers14071820

Figure Lengend Snippet: ( a ) Cell proliferation and ( b ) cell viability alterations of HT-29 and SW480 colorectal cancer cell lines following different folic acid (FA) supplies. Sulforhodamine B (SRB) was used for cell proliferation detection (* p ≤ 0.05, *** p ≤ 0.001), while cell viability data were obtained by alamarBlue assay (** p ≤ 0.01). FA-depleted cells were kept in media containing 0 ng/mL FA, whereas treated cells were exposed to 100 and 10,000 ng/mL FA for 72 h. The percentages of cell proliferation and viability were given relative to samples kept in the normal growth media. FA: folic acid.

Article Snippet: HT-29 (ATCC HTB-39) and SW480 (ATCC CCL-228) human colon adenocarcinoma cell lines were cultured in RPMI 1640 medium (LM-R1641, Biosera, Ringmer, UK) containing 10% fetal bovine serum (Biosera), 80 mg/2 mL gentamycin (Sandoz GmbH, Kundl, Austria), and 2 mM L-glutamine (Biosera).

Techniques: Alamar Blue Assay

Genomic stability detection of HT-29 and SW480 cells exposed to different folic acid (FA) concentrations (0, 100, 10,000 ng/mL). ( a ) Micronucleus (MN) scoring was performed on DAPI- and anti-γ-H2AX-stained slides. Left: We obtained the results by proportioning the cells with MN with all cells counted (** p ≤ 0.01, *** p ≤ 0.001). Right: Representative γ-H2AX-positive micronuclei are indicated with arrows. ( b ) DNA integrity was evaluated with comet assay, additionally. Left: Graphs show the changes in genomic stability in consideration of comet tail DNA percentage (* p ≤ 0.05). Right: Characteristic comets of both cell lines were captured following different treatments. FA: folic acid.

Journal: Cancers

Article Title: Folic Acid Treatment Directly Influences the Genetic and Epigenetic Regulation along with the Associated Cellular Maintenance Processes of HT-29 and SW480 Colorectal Cancer Cell Lines

doi: 10.3390/cancers14071820

Figure Lengend Snippet: Genomic stability detection of HT-29 and SW480 cells exposed to different folic acid (FA) concentrations (0, 100, 10,000 ng/mL). ( a ) Micronucleus (MN) scoring was performed on DAPI- and anti-γ-H2AX-stained slides. Left: We obtained the results by proportioning the cells with MN with all cells counted (** p ≤ 0.01, *** p ≤ 0.001). Right: Representative γ-H2AX-positive micronuclei are indicated with arrows. ( b ) DNA integrity was evaluated with comet assay, additionally. Left: Graphs show the changes in genomic stability in consideration of comet tail DNA percentage (* p ≤ 0.05). Right: Characteristic comets of both cell lines were captured following different treatments. FA: folic acid.

Article Snippet: HT-29 (ATCC HTB-39) and SW480 (ATCC CCL-228) human colon adenocarcinoma cell lines were cultured in RPMI 1640 medium (LM-R1641, Biosera, Ringmer, UK) containing 10% fetal bovine serum (Biosera), 80 mg/2 mL gentamycin (Sandoz GmbH, Kundl, Austria), and 2 mM L-glutamine (Biosera).

Techniques: Staining, Single Cell Gel Electrophoresis

DNA methylation analysis of HT-29 and SW480 cell lines exposed to different folic acid (FA) concentrations. The methylation levels of long interspersed nuclear element 1 (LINE-1) CpG positions (pos 1, pos 2, pos 3) were ( a ) summarized and also ( b ) visualized individually to detect global DNA methylation changes. With the use of Reduced Representation Bisulfite Sequencing (RRBS) method, a genome-wide methylome profile of 10,000 ng/mL FA-treated cells was established in the comparison of cells kept in FA-free (0 ng/mL FA) media. ( c ) Firstly, the number of genes with altered methylation in the investigated CpG sites was assessed. “Hyper” and “hypo” sections indicate the number of genes with methylated and unmethylated CpG sites, respectively. The intersection of these two categories refers to the genes that possess both methylated and unmethylated CpG dinucleotides. ( d ) Heatmap shows the top 10 significantly ( p ≤ 0.05) enriched Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways with the number of differentially methylated genes. ( e ) Pie charts represent the localization of differentially methylated sites (DMS) in distinct chromatin states. FA: folic acid; pos: CpG position; hyper: hypermethylation; hypo: hypomethylation; DMSs: differentially methylated sites; heterochrom/lo: heterochromatin or low signal region; txn: transcription; CNV: copy number variation; KEGG: Kyoto Encyclopedia of Genes and Genomes.

Journal: Cancers

Article Title: Folic Acid Treatment Directly Influences the Genetic and Epigenetic Regulation along with the Associated Cellular Maintenance Processes of HT-29 and SW480 Colorectal Cancer Cell Lines

doi: 10.3390/cancers14071820

Figure Lengend Snippet: DNA methylation analysis of HT-29 and SW480 cell lines exposed to different folic acid (FA) concentrations. The methylation levels of long interspersed nuclear element 1 (LINE-1) CpG positions (pos 1, pos 2, pos 3) were ( a ) summarized and also ( b ) visualized individually to detect global DNA methylation changes. With the use of Reduced Representation Bisulfite Sequencing (RRBS) method, a genome-wide methylome profile of 10,000 ng/mL FA-treated cells was established in the comparison of cells kept in FA-free (0 ng/mL FA) media. ( c ) Firstly, the number of genes with altered methylation in the investigated CpG sites was assessed. “Hyper” and “hypo” sections indicate the number of genes with methylated and unmethylated CpG sites, respectively. The intersection of these two categories refers to the genes that possess both methylated and unmethylated CpG dinucleotides. ( d ) Heatmap shows the top 10 significantly ( p ≤ 0.05) enriched Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways with the number of differentially methylated genes. ( e ) Pie charts represent the localization of differentially methylated sites (DMS) in distinct chromatin states. FA: folic acid; pos: CpG position; hyper: hypermethylation; hypo: hypomethylation; DMSs: differentially methylated sites; heterochrom/lo: heterochromatin or low signal region; txn: transcription; CNV: copy number variation; KEGG: Kyoto Encyclopedia of Genes and Genomes.

Article Snippet: HT-29 (ATCC HTB-39) and SW480 (ATCC CCL-228) human colon adenocarcinoma cell lines were cultured in RPMI 1640 medium (LM-R1641, Biosera, Ringmer, UK) containing 10% fetal bovine serum (Biosera), 80 mg/2 mL gentamycin (Sandoz GmbH, Kundl, Austria), and 2 mM L-glutamine (Biosera).

Techniques: DNA Methylation Assay, Methylation, Methylation Sequencing, Genome Wide, Comparison

Genome-wide transcriptome alterations of HT-29 and SW480 cells following 10,000 ng/mL folic acid (FA) supplementation detected by Human Transcriptome Array 2.0 (HTA 2.0). ( a ) Pie charts represent the proportion of up- and downregulated genes. ( b ) Visual networks of protein–protein interactions were generated by the StringApp of Cytoscape software based on the list of genes with significant ( p ≤ 0.05) expression alterations and ≥|1.5| fold change (FC). Colors refer to the expression level of protein-coding genes (dark blue: FC ≤ −2, light blue: FC ≥ −2 and ≤−1.5, light red: FC ≥ 1.5 and ≤2, dark red: FC ≥ 2). ( c ) Top 10 genes showing significant ( p ≤ 0.05) up- and downregulation visualized with volcano plots. Gray points represent all the transcripts detected by HTA 2.0 microarray, while significantly ( p ≤ 0.05) altering genes with FC ≥ |1.5| value were marked with red and blue. P-val: p -value.

Journal: Cancers

Article Title: Folic Acid Treatment Directly Influences the Genetic and Epigenetic Regulation along with the Associated Cellular Maintenance Processes of HT-29 and SW480 Colorectal Cancer Cell Lines

doi: 10.3390/cancers14071820

Figure Lengend Snippet: Genome-wide transcriptome alterations of HT-29 and SW480 cells following 10,000 ng/mL folic acid (FA) supplementation detected by Human Transcriptome Array 2.0 (HTA 2.0). ( a ) Pie charts represent the proportion of up- and downregulated genes. ( b ) Visual networks of protein–protein interactions were generated by the StringApp of Cytoscape software based on the list of genes with significant ( p ≤ 0.05) expression alterations and ≥|1.5| fold change (FC). Colors refer to the expression level of protein-coding genes (dark blue: FC ≤ −2, light blue: FC ≥ −2 and ≤−1.5, light red: FC ≥ 1.5 and ≤2, dark red: FC ≥ 2). ( c ) Top 10 genes showing significant ( p ≤ 0.05) up- and downregulation visualized with volcano plots. Gray points represent all the transcripts detected by HTA 2.0 microarray, while significantly ( p ≤ 0.05) altering genes with FC ≥ |1.5| value were marked with red and blue. P-val: p -value.

Article Snippet: HT-29 (ATCC HTB-39) and SW480 (ATCC CCL-228) human colon adenocarcinoma cell lines were cultured in RPMI 1640 medium (LM-R1641, Biosera, Ringmer, UK) containing 10% fetal bovine serum (Biosera), 80 mg/2 mL gentamycin (Sandoz GmbH, Kundl, Austria), and 2 mM L-glutamine (Biosera).

Techniques: Genome Wide, Protein-Protein interactions, Generated, Software, Expressing, Microarray

The intersection of genome-wide DNA methylation and gene expression data obtained by Reduced Representation Bisulfite Sequencing (RRBS) and Human Transcriptome Array (HTA) 2.0 analyses. Values represent the methylome and transcriptome pattern changes of 10,000 ng/mL folic acid (FA)-treated HT-29 and SW480 cells compared to non-treated samples (0 ng/mL FA). Only genes with promoter methylation status alteration in accordance with their expression level ( p ≤ 0.05 and fold change ≥|1.5|) were listed (left) and also visualized in volcano plots (right). Gray points represent all the transcripts detected by the microarray, while blue ones highlight down- and red ones show upregulating genes from the list. met. status: DNA methylation status; met. diff.: DNA methylation difference; expr. status: gene expression status; P-val: p -value.

Journal: Cancers

Article Title: Folic Acid Treatment Directly Influences the Genetic and Epigenetic Regulation along with the Associated Cellular Maintenance Processes of HT-29 and SW480 Colorectal Cancer Cell Lines

doi: 10.3390/cancers14071820

Figure Lengend Snippet: The intersection of genome-wide DNA methylation and gene expression data obtained by Reduced Representation Bisulfite Sequencing (RRBS) and Human Transcriptome Array (HTA) 2.0 analyses. Values represent the methylome and transcriptome pattern changes of 10,000 ng/mL folic acid (FA)-treated HT-29 and SW480 cells compared to non-treated samples (0 ng/mL FA). Only genes with promoter methylation status alteration in accordance with their expression level ( p ≤ 0.05 and fold change ≥|1.5|) were listed (left) and also visualized in volcano plots (right). Gray points represent all the transcripts detected by the microarray, while blue ones highlight down- and red ones show upregulating genes from the list. met. status: DNA methylation status; met. diff.: DNA methylation difference; expr. status: gene expression status; P-val: p -value.

Article Snippet: HT-29 (ATCC HTB-39) and SW480 (ATCC CCL-228) human colon adenocarcinoma cell lines were cultured in RPMI 1640 medium (LM-R1641, Biosera, Ringmer, UK) containing 10% fetal bovine serum (Biosera), 80 mg/2 mL gentamycin (Sandoz GmbH, Kundl, Austria), and 2 mM L-glutamine (Biosera).

Techniques: Genome Wide, DNA Methylation Assay, Gene Expression, Methylation Sequencing, Methylation, Expressing, Microarray

Figure 4. Methylation-specific PCR results. MS-PCR results for p15/CDKN2b and p16/CDKN2a after bisulfite treatment with wild-type primer (lanes 1 and 4), methylated (lanes 2 and 5) and unmethylated (lanes 3 and 6) primer sets on genomic DNA extracted from cell lines HL-60 and KG1a. m ¼ marker; amplified fragment length ¼ 150 bp.

Journal: DNA research : an international journal for rapid publication of reports on genes and genomes

Article Title: Ultra-sensitive immunodetection of 5'methyl cytosine for DNA methylation analysis on oligonucleotide microarrays.

doi: 10.1093/dnares/dsi024

Figure Lengend Snippet: Figure 4. Methylation-specific PCR results. MS-PCR results for p15/CDKN2b and p16/CDKN2a after bisulfite treatment with wild-type primer (lanes 1 and 4), methylated (lanes 2 and 5) and unmethylated (lanes 3 and 6) primer sets on genomic DNA extracted from cell lines HL-60 and KG1a. m ¼ marker; amplified fragment length ¼ 150 bp.

Article Snippet: Human acute myeloid leukemia (AML) cell lines HL-60 (American Type Culture Collection) and KG1a (Deutsche Sammlung von Mikroorganismen und Zellkulturen, DSMZ, Braunschweig, Germany) were grown in RPMI-1640 medium (Gibco Invitrogen, Communicated by Michio Oishi * To whom correspondence should be addressed.

Techniques: Methylation, Marker

Figure 5. Microarray methyl-cytosine immunodetection on genomic DNA. Hybridization of restriction enzyme digested genomic DNA of two AML tumor cell lines. A. Top scan of HL-60 (1) and bottom scan of KG1a (2) microarray. Overlaid scans display methylation signal (cyanine 3: green signal) of KG1a DNA compared to HL-60 and capture oligonucleotide scan (cyanine 5: red signal). For negative control () spotted nonsense oligonucleotide without 50mC were used; positive control (þ) with 50mC modified control oligonuc- leotide. Original magnification: ·100; spot distance: 150 mm; pixel resolution: 0.516 mm. B. Box plot analysis of A reveal that HL-60 is methylation negative for p15/CDKN2b and p16/CDKN2a but methylation positive for E-cadherin. Results for KG1a are inverted. Box plots of 45 individual spots per gene show median, 75% percent- ile and outliers. P < 0.01 for all three genes.

Journal: DNA research : an international journal for rapid publication of reports on genes and genomes

Article Title: Ultra-sensitive immunodetection of 5'methyl cytosine for DNA methylation analysis on oligonucleotide microarrays.

doi: 10.1093/dnares/dsi024

Figure Lengend Snippet: Figure 5. Microarray methyl-cytosine immunodetection on genomic DNA. Hybridization of restriction enzyme digested genomic DNA of two AML tumor cell lines. A. Top scan of HL-60 (1) and bottom scan of KG1a (2) microarray. Overlaid scans display methylation signal (cyanine 3: green signal) of KG1a DNA compared to HL-60 and capture oligonucleotide scan (cyanine 5: red signal). For negative control () spotted nonsense oligonucleotide without 50mC were used; positive control (þ) with 50mC modified control oligonuc- leotide. Original magnification: ·100; spot distance: 150 mm; pixel resolution: 0.516 mm. B. Box plot analysis of A reveal that HL-60 is methylation negative for p15/CDKN2b and p16/CDKN2a but methylation positive for E-cadherin. Results for KG1a are inverted. Box plots of 45 individual spots per gene show median, 75% percent- ile and outliers. P < 0.01 for all three genes.

Article Snippet: Human acute myeloid leukemia (AML) cell lines HL-60 (American Type Culture Collection) and KG1a (Deutsche Sammlung von Mikroorganismen und Zellkulturen, DSMZ, Braunschweig, Germany) were grown in RPMI-1640 medium (Gibco Invitrogen, Communicated by Michio Oishi * To whom correspondence should be addressed.

Techniques: Microarray, Immunodetection, DNA Hybridization, Methylation, Negative Control, Positive Control, Control

Fig. 2 DACH1 deletion PCa enhances AR signaling. A Interrogation of human PCa gene expression data [26], showing candidate genetic drivers ERG, ETV1/ETV4/FLI1, SPOP, FOXA1, and unknown. Samples with DACH1 homozygous (deep) genetic deletions (29/333) are shown as an additional subtype. The AR score (the average of the AR target gene expression) refers to a group of AR-responsive genes [26], and together with the expression Z-score of the AR target genes, are shown as colorimetric scales. The AR score-based gene names are shown. The androgen receptor (AR) activity, inferred by the induction of AR target genes, was increased in DACH1 homozygous (‘deep’) deletion PCa compared with normal (P = 2 × 10−5 by t-test) and ERG mutation groups (P = 0.003 by t-test). B AR mRNA and AR protein levels, shown for each DACH1 deletion sample, were not significantly different. C The iCluster [29], mRNA cluster, and SCNA (somatic copy-number alteration), and DNA methylation status are shown for the PCa classified by the corresponding gene deletion subtypes. D DACH1 homozygous deletions were enriched for iCluster 2 and 3 [29], mRNA cluster 2 (P = 0.0003 by Fisher exact test, SCNA (“more” somatic copy-number alteration, P = 0.0004 by Fisher exact test), but not for DNA methylation.

Journal: Oncogene

Article Title: The DACH1 gene is frequently deleted in prostate cancer, restrains prostatic intraepithelial neoplasia, decreases DNA damage repair, and predicts therapy responses.

doi: 10.1038/s41388-023-02668-9

Figure Lengend Snippet: Fig. 2 DACH1 deletion PCa enhances AR signaling. A Interrogation of human PCa gene expression data [26], showing candidate genetic drivers ERG, ETV1/ETV4/FLI1, SPOP, FOXA1, and unknown. Samples with DACH1 homozygous (deep) genetic deletions (29/333) are shown as an additional subtype. The AR score (the average of the AR target gene expression) refers to a group of AR-responsive genes [26], and together with the expression Z-score of the AR target genes, are shown as colorimetric scales. The AR score-based gene names are shown. The androgen receptor (AR) activity, inferred by the induction of AR target genes, was increased in DACH1 homozygous (‘deep’) deletion PCa compared with normal (P = 2 × 10−5 by t-test) and ERG mutation groups (P = 0.003 by t-test). B AR mRNA and AR protein levels, shown for each DACH1 deletion sample, were not significantly different. C The iCluster [29], mRNA cluster, and SCNA (somatic copy-number alteration), and DNA methylation status are shown for the PCa classified by the corresponding gene deletion subtypes. D DACH1 homozygous deletions were enriched for iCluster 2 and 3 [29], mRNA cluster 2 (P = 0.0003 by Fisher exact test, SCNA (“more” somatic copy-number alteration, P = 0.0004 by Fisher exact test), but not for DNA methylation.

Article Snippet: For detection of DACH1 protein, antigen retrieval was done in Tris/EDTA buffer at pH 9 for 30min at 97 °C, followed by 30min incubation with rabbit polyclonal DACH1 antibody (Cat. #10914-1-AP, Proteintech, Rosemont, IL; dilution 1:1,000) [33], HRP-conjugated polymer (Envision FLEX, Cat#GV80011-2, Agilent), and DAB chromogen deposition.

Techniques: Gene Expression, Targeted Gene Expression, Expressing, Activity Assay, Mutagenesis, DNA Methylation Assay

Fig. 3 Prostate-specific Dach1 gene deletion promotes prostate hyperplasia and dysplasia in OncoMice (15 weeks). A Schematic representation of transgenes integrated into mice. B Representative immunohistochemistry for Dach1, with data quantitated as mean ± standard error of the mean (SEM) for N = 20 (4 separate mice, with 5 views per mouse, in each group). C Blinded quantitative histology grading of prostate of multigenic mice at 15 weeks. Data are shown as mean ± SEM for N = 15 (5 separate mice, with 3 prostate areas [anterior, ventral, lateral] per mouse) in each group). H&E staining demonstrates the presence of a focal atypical intraductal proliferation in Dach1−/−prostate, compatible with prostatic intraepithelial neoplasia (PIN). Representative immunohistochemistry with results shown as mean ± SEM for Ki-67 (n = 20, 4 separate mice for each genotype, 5 views per mouse) (D), Beclin 1 (n = 9, 3 separate mice for each genotype, 3 views per mouse) (E); and AR (n = 15 for Dach1wt/wt mice, 3 separate mice, 5 views per mouse) (n = 12 for Dach1fl/flmice, 3 separate mice, 2 views for one mouse and 5 views for other two mice) (F). Scale bars, 50 μm. A Student’s t test was performed for all comparisons.

Journal: Oncogene

Article Title: The DACH1 gene is frequently deleted in prostate cancer, restrains prostatic intraepithelial neoplasia, decreases DNA damage repair, and predicts therapy responses.

doi: 10.1038/s41388-023-02668-9

Figure Lengend Snippet: Fig. 3 Prostate-specific Dach1 gene deletion promotes prostate hyperplasia and dysplasia in OncoMice (15 weeks). A Schematic representation of transgenes integrated into mice. B Representative immunohistochemistry for Dach1, with data quantitated as mean ± standard error of the mean (SEM) for N = 20 (4 separate mice, with 5 views per mouse, in each group). C Blinded quantitative histology grading of prostate of multigenic mice at 15 weeks. Data are shown as mean ± SEM for N = 15 (5 separate mice, with 3 prostate areas [anterior, ventral, lateral] per mouse) in each group). H&E staining demonstrates the presence of a focal atypical intraductal proliferation in Dach1−/−prostate, compatible with prostatic intraepithelial neoplasia (PIN). Representative immunohistochemistry with results shown as mean ± SEM for Ki-67 (n = 20, 4 separate mice for each genotype, 5 views per mouse) (D), Beclin 1 (n = 9, 3 separate mice for each genotype, 3 views per mouse) (E); and AR (n = 15 for Dach1wt/wt mice, 3 separate mice, 5 views per mouse) (n = 12 for Dach1fl/flmice, 3 separate mice, 2 views for one mouse and 5 views for other two mice) (F). Scale bars, 50 μm. A Student’s t test was performed for all comparisons.

Article Snippet: For detection of DACH1 protein, antigen retrieval was done in Tris/EDTA buffer at pH 9 for 30min at 97 °C, followed by 30min incubation with rabbit polyclonal DACH1 antibody (Cat. #10914-1-AP, Proteintech, Rosemont, IL; dilution 1:1,000) [33], HRP-conjugated polymer (Envision FLEX, Cat#GV80011-2, Agilent), and DAB chromogen deposition.

Techniques: Immunohistochemistry, Staining

Fig. 4 Prostate-specific Dach1 gene deletion in TRAMP mice induces PIN lesions with increased TGFβ activity. Genome-wide expression analysis of TRAMP Dach1+/+ vs. Dach1−/−PIN lesions was analyzed for enrichment of known targets of upstream regulators using Ingenuity Pathway Analysis (IPA) and represented as (A) barplot was calculated by IPA activation Z-score labeled and as (B) bubble plot with size of the bubbles proportional to –log10 p values. C IHC was conducted for SMAD activation using SMAD2P, quantitated and shown as (D) mean ± SEM (n = 15 for Dach1wt/wt mice, 3 separate mice, 5 views per mouse) (n = 10 for Dach1fl/flmice, 2 separate mice, 5 views per mouse). E–G Western blot of either PCa cell lines for the presence of DACH1 (E, F) or (G) TGFβ-treated (10 ng/ml for 24 h) PC3 cells illustrating induction of nuclear vimentin and cytoplasmic cyclin D1. Protein loading controls are β-tubulin (a marker of cytoplasmic proteins) and Lamin B1 (a marker for nuclear protein enrichment). H Microarray-based gene expression analysis of PC3 cells stably expressing DACH1, showing restraint of genes mediating TGFβ signaling (shown with blue arrows), including reduction of TGFB2 and TGFBR2 [33].

Journal: Oncogene

Article Title: The DACH1 gene is frequently deleted in prostate cancer, restrains prostatic intraepithelial neoplasia, decreases DNA damage repair, and predicts therapy responses.

doi: 10.1038/s41388-023-02668-9

Figure Lengend Snippet: Fig. 4 Prostate-specific Dach1 gene deletion in TRAMP mice induces PIN lesions with increased TGFβ activity. Genome-wide expression analysis of TRAMP Dach1+/+ vs. Dach1−/−PIN lesions was analyzed for enrichment of known targets of upstream regulators using Ingenuity Pathway Analysis (IPA) and represented as (A) barplot was calculated by IPA activation Z-score labeled and as (B) bubble plot with size of the bubbles proportional to –log10 p values. C IHC was conducted for SMAD activation using SMAD2P, quantitated and shown as (D) mean ± SEM (n = 15 for Dach1wt/wt mice, 3 separate mice, 5 views per mouse) (n = 10 for Dach1fl/flmice, 2 separate mice, 5 views per mouse). E–G Western blot of either PCa cell lines for the presence of DACH1 (E, F) or (G) TGFβ-treated (10 ng/ml for 24 h) PC3 cells illustrating induction of nuclear vimentin and cytoplasmic cyclin D1. Protein loading controls are β-tubulin (a marker of cytoplasmic proteins) and Lamin B1 (a marker for nuclear protein enrichment). H Microarray-based gene expression analysis of PC3 cells stably expressing DACH1, showing restraint of genes mediating TGFβ signaling (shown with blue arrows), including reduction of TGFB2 and TGFBR2 [33].

Article Snippet: For detection of DACH1 protein, antigen retrieval was done in Tris/EDTA buffer at pH 9 for 30min at 97 °C, followed by 30min incubation with rabbit polyclonal DACH1 antibody (Cat. #10914-1-AP, Proteintech, Rosemont, IL; dilution 1:1,000) [33], HRP-conjugated polymer (Envision FLEX, Cat#GV80011-2, Agilent), and DAB chromogen deposition.

Techniques: Activity Assay, Genome Wide, Expressing, Activation Assay, Labeling, Western Blot, Marker, Protein Enrichment, Microarray, Gene Expression, Stable Transfection

Fig. 6 DACH1 facilitates the recruitment of, and co-accumulates with, Ku70/Ku80 proteins at sites of DNA damage. A Co-accumulation of Ku-70/Ku-80 at laser micro irradiation-induced DSBs sites in Dach1+/+ 3T3 cells. B, C 24 h after transfection, the accumulation of DACH1 and Ku70/Ku80 in Dach1−/−3T3 cells transfected with EGFP or EGFP-tagged DACH1 and red fluorescent protein (RFP)-tagged Ku70 or RFP-tagged Ku80 expression vectors were treated with laser micro-irradiation (403 nm) to induce DSBs. Time is shown after micro-irradiation. Accumulation of the transfected proteins was indicated by EGFP (green) or RFP (red) fluorescence at laser-irradiated sites. Co-accumulation was visualized in yellow merged images. Time is shown in minutes and -fold increase in foci intensity is shown as mean ± SEM for N = 5 separate cells.

Journal: Oncogene

Article Title: The DACH1 gene is frequently deleted in prostate cancer, restrains prostatic intraepithelial neoplasia, decreases DNA damage repair, and predicts therapy responses.

doi: 10.1038/s41388-023-02668-9

Figure Lengend Snippet: Fig. 6 DACH1 facilitates the recruitment of, and co-accumulates with, Ku70/Ku80 proteins at sites of DNA damage. A Co-accumulation of Ku-70/Ku-80 at laser micro irradiation-induced DSBs sites in Dach1+/+ 3T3 cells. B, C 24 h after transfection, the accumulation of DACH1 and Ku70/Ku80 in Dach1−/−3T3 cells transfected with EGFP or EGFP-tagged DACH1 and red fluorescent protein (RFP)-tagged Ku70 or RFP-tagged Ku80 expression vectors were treated with laser micro-irradiation (403 nm) to induce DSBs. Time is shown after micro-irradiation. Accumulation of the transfected proteins was indicated by EGFP (green) or RFP (red) fluorescence at laser-irradiated sites. Co-accumulation was visualized in yellow merged images. Time is shown in minutes and -fold increase in foci intensity is shown as mean ± SEM for N = 5 separate cells.

Article Snippet: For detection of DACH1 protein, antigen retrieval was done in Tris/EDTA buffer at pH 9 for 30min at 97 °C, followed by 30min incubation with rabbit polyclonal DACH1 antibody (Cat. #10914-1-AP, Proteintech, Rosemont, IL; dilution 1:1,000) [33], HRP-conjugated polymer (Envision FLEX, Cat#GV80011-2, Agilent), and DAB chromogen deposition.

Techniques: Irradiation, Transfection, Expressing