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Updated: Apr 7, 2026

Continuous Fluorescence-Based Endonuclease-Coupled DNA Methylation Assay to Screen for DNA Methyltransferase Inhibitors
Published on: August 5, 2022
TCF21 hypermethylation in genetically quiescent clear cell sarcoma of the kidney
Saskia L Gooskens1,2, Samantha Gadd3, Jaime M Guidry Auvil4
1Department of Pediatric Hematology and Oncology, Erasmus MC - Sophia Children's Hospital, Rotterdam, The Netherlands.
Abstract:
Clear Cell Sarcoma of the Kidney (CCSK) is a rare childhood tumor whose molecular pathogenesis remains poorly understood. We analyzed a discovery set of 13 CCSKs for changes in chromosome copy number, mutations, rearrangements, global gene expression and global DNA methylation. No recurrent segmental chromosomal copy number changes or somatic variants (single nucleotide or small insertion/deletion) were identified. One tumor with t(10;17)(q22;p13) involving fusion of YHWAE with NUTM2B was identified. Integrated analysis of expression and methylation data identified promoter hypermethylation and low expression of the tumor suppressor gene TCF21 (Pod-1/capsulin/epicardin) in all CCSKs except the case with t(10;17)(q22;p13). TARID, the long noncoding RNA responsible for demethylating TCF21, was virtually undetectable in most CCSKs. TCF21 hypermethylation and decreased TARID expression were validated in an independent set of CCSK tumor samples. The presence of significant hypermethylation of TCF21, a transcription factor known to be active early in renal development, supports the hypothesis that hypermethylation of TCF21 and/or decreased TARID expression lies within the pathogenic pathway of most CCSKs. Future studies are needed to functionally verify a tumorigenic role of TCF21 down-regulation and to tie this to the unique gene expression pattern of CCSK.
Insights
Clear Cell Sarcoma of the Kidney (CCSK) is a rare childhood cancer. Molecular analysis revealed TCF21 gene hypermethylation and decreased TARID expression in most CCSK tumors, suggesting a role in pathogenesis.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Clear Cell Sarcoma of the Kidney (CCSK) is a rare pediatric tumor with an unclear molecular basis.
- Understanding CCSK's pathogenesis is crucial for developing targeted therapies.
Purpose of the Study:
- To investigate the molecular mechanisms underlying Clear Cell Sarcoma of the Kidney.
- To identify key genetic and epigenetic alterations in CCSK.
Main Methods:
- Analysis of chromosome copy number, mutations, rearrangements, gene expression, and DNA methylation in CCSK samples.
- Validation of key findings in an independent cohort of CCSK tumors.
Main Results:
- No recurrent chromosomal copy number changes or somatic mutations were found.
- A specific chromosomal rearrangement, t(10;17)(q22;p13), was identified in one tumor.
- Promoter hypermethylation and low expression of the TCF21 gene were observed in most CCSKs.
- Decreased expression of the long noncoding RNA TARID, which demethylates TCF21, was noted in most CCSKs.
Conclusions:
- TCF21 hypermethylation and/or decreased TARID expression are implicated in the pathogenesis of most CCSKs.
- These epigenetic alterations may represent a common pathway in CCSK development.
- Further research is needed to confirm the tumorigenic role of TCF21 downregulation in CCSK.
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