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Exploring targets of TET2-mediated methylation reprogramming as potential discriminators of prostate cancer
Shivani Kamdar1,2, Ruth Isserlin3, Theodorus Van der Kwast2,4
1Lunenfeld-Tanenbaum Research Institute, Mount Sinai Hospital, 60 Murray Street, L6-304B, Toronto, ON, M5T 3L9, Canada.
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 pattern characteristic of tumor suppressors. Decreased expression of these genes significantly discriminates between recurrent and non-recurrent prostate tumors from the Cancer Genome Atlas (TCGA) cohort (n = 423), and ASB2, NUDT10, and SRPX were significantly correlated with lower recurrence-free survival in patients by Kaplan-Meier analysis. ASB2, MEIS2, and SRPX also showed significantly lower expression in high-risk Gleason score 8 tumors as compared to low or intermediate risk tumors, suggesting that these genes may be particularly useful as indicators of PCa progression. Furthermore, methylation array probes in the TCGA dataset, which were proximal to the highly conserved, differentially methylated sites identified in our TET2-knockout cells, were able to significantly distinguish between matched prostate tumor and normal prostate tissues (n = 50 pairs). Except ASB2, all genes exhibited significantly increased methylation at these probes, and methylation status of at least one probe for each of these genes showed association with measures of PCa progression such as recurrence, stage, or Gleason score. Since ASB2 did not have any probes within the TET2-knockout differentially methylated region, we validated ASB2 methylation in an independent series of matched tumor-normal samples (n = 19) by methylation-specific qPCR, which revealed concordant and significant increases in promoter methylation within the TET2-knockout site.
Conclusions:
Our study identifies seven genes governed by TET2 loss in PCa which exhibit an association between their methylation and expression status and measures of PCa progression. As differential methylation profiles and TET2 expression are associated with advanced PCa, further investigation of these specialized TET2 targets may provide important insights into patterns of carcinogenic gene dysregulation.
Insights
TET2 enzyme loss in prostate cancer (PCa) leads to altered DNA methylation and reduced expression of seven key genes. These genes are linked to PCa progression and recurrence, offering potential biomarkers for disease management.
Area of Science:
- Oncology
- Epigenetics
- Molecular Biology
Background:
- Global DNA methylation changes are characteristic of cancer.
- TET enzymes, crucial for DNA demethylation, are downregulated in prostate cancer (PCa).
- TET2 is specifically repressed in PCa, suggesting its role in carcinogenesis.
Purpose of the Study:
- To identify genes regulated by TET2 dysregulation in prostate cancer.
- To investigate the methylation and expression patterns of these genes in relation to PCa progression.
Main Methods:
- Utilized CRISPR/Cas9-TET2-knockout prostate cell line.
- Performed whole-transcriptome and whole-methylome sequencing.
- Analyzed TCGA datasets for gene expression, methylation, and clinical correlation.
Main Results:
- Identified seven candidate genes (ASB2, ETNK2, MEIS2, NRG1, NTN1, NUDT10, SRPX) with reduced expression and increased methylation.
- These genes significantly differentiate recurrent from non-recurrent PCa and correlate with survival.
- ASB2, MEIS2, and SRPX are associated with high-risk Gleason scores and PCa progression.
Conclusions:
- Seven genes are identified as TET2 targets in PCa, with altered methylation and expression linked to disease progression.
- These TET2-regulated genes may serve as indicators of PCa advancement.
- Further research into these targets could elucidate carcinogenic gene dysregulation patterns.
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