Abstract Background Global DNA methylation alterations are hallmarks of cancer. The tumor-suppressive TET enzymes, which are involved in DNA demethylation, are decreased in prostate cancer (PCa); in particular, TET2 is specifically targeted by androgen-dependent mechanisms of repression in PCa and may play a central role in carcinogenesis. Thus, the identification of key genes targeted by TET2 dysregulation may provide further insight into cancer biology. Results Using a CRISPR/Cas9-derived TET2-knockout prostate cell line, and through whole-transcriptome and whole-methylome sequencing, we identified seven candidate genes—ASB2, ETNK2, MEIS2, NRG1, NTN1, NUDT10, and SRPX—exhibiting reduced expression and increased promoter methylation, a pat...
<div><p>Many differentially methylated genes have been identified in prostate cancer (PCa), primaril...
SummaryTumor suppressor gene silencing through cytosine methylation contributes to cancer formation....
The clinical heterogeneity of prostate cancer (PCa) makes it difficult to identify those patients th...
Abstract Background Global DNA methylation alteration...
Aberrant cytosine methylation is one of the most common alterations in cancer, with global hypomethy...
Modulation of epigenetic patterns has promising efficacy for treating cancer. 5-Hydroxymethylated cy...
Although DNA methylation is a key regulator of gene expression, the comprehensive methylation landsc...
Although DNA methylation is a key regulator of gene expression, the comprehensive methylation landsc...
Ten-eleven translocation (TET) proteins are recently characterized dioxygenases that regulate demeth...
Altered genome methylation is a hallmark of human malignancies. In this study, high-throughput analy...
Alterations in DNA methylation patterns are associated with many types of cancers. DNA methylation a...
Figure S11. Methylation of ASB2 is increased in both knockouts (CR1 and CR2) within the TET2-knockou...
Widespread genome hypo-methylation and promoter hyper-methylation of epithelium-specific genes are h...
Tumor suppressor gene silencing through cytosine methylation contributes to cancer formation. Whethe...
Aberrant DNA methylation in gene promoters causes gene silencing and is a common event in prostate c...
<div><p>Many differentially methylated genes have been identified in prostate cancer (PCa), primaril...
SummaryTumor suppressor gene silencing through cytosine methylation contributes to cancer formation....
The clinical heterogeneity of prostate cancer (PCa) makes it difficult to identify those patients th...
Abstract Background Global DNA methylation alteration...
Aberrant cytosine methylation is one of the most common alterations in cancer, with global hypomethy...
Modulation of epigenetic patterns has promising efficacy for treating cancer. 5-Hydroxymethylated cy...
Although DNA methylation is a key regulator of gene expression, the comprehensive methylation landsc...
Although DNA methylation is a key regulator of gene expression, the comprehensive methylation landsc...
Ten-eleven translocation (TET) proteins are recently characterized dioxygenases that regulate demeth...
Altered genome methylation is a hallmark of human malignancies. In this study, high-throughput analy...
Alterations in DNA methylation patterns are associated with many types of cancers. DNA methylation a...
Figure S11. Methylation of ASB2 is increased in both knockouts (CR1 and CR2) within the TET2-knockou...
Widespread genome hypo-methylation and promoter hyper-methylation of epithelium-specific genes are h...
Tumor suppressor gene silencing through cytosine methylation contributes to cancer formation. Whethe...
Aberrant DNA methylation in gene promoters causes gene silencing and is a common event in prostate c...
<div><p>Many differentially methylated genes have been identified in prostate cancer (PCa), primaril...
SummaryTumor suppressor gene silencing through cytosine methylation contributes to cancer formation....
The clinical heterogeneity of prostate cancer (PCa) makes it difficult to identify those patients th...