Science and Research

Epigenetic silencing and CRISPR-mediated reactivation of tight junction protein claudin10b (CLDN10B) in renal cancer

BACKGROUND: The kidney's tubular system relies on cell polarity and tight junctions to maintain structure and function and disruptions contribute to diseases like cancer. Loss of tight junction proteins such as Claudins can actively contribute to tumorigenesis. RESULTS: We aimed to identify biomarkers for renal carcinoma, after kidney transplantation and conventional kidney tumors. We identified the epigenetic silencing of the Claudin 10 gene isoform B (CLDN10B) through DNA hypermethylation in renal cancers, including clear cell (ccRCC), papillary (pRCC) and post-transplantation renal carcinoma (PT-ccRCC). In contrast, CLDN10A was hypomethylated in ccRCC and pRCC. Differential methylation of the isoforms discriminates RCC from other malignancies. The epigenetic alteration of CLDN10B significantly correlated with reduced patient survival and advanced tumor staging. CLDN10B overexpression or induction significantly inhibited migration, cell cycle progression, and cellular growth. Using a CRISPR-based epigenetic editing tool reactivated CLDN10B to its endogenous level using VP160 and TET1 by promoter demethylation and significantly demonstrated its tumor-suppressive effects in 2D and 3D cell models. CONCLUSION: Our findings suggest that CLDN10B acts as a tumor suppressor, and its epigenetic regulation may represent a therapeutic target for RCC. Ultimately, understanding CLDN10B's regulation and function could provide new insights into renal cancer treatment.

  • Villora, S. A.
  • Zhao, Y.
  • Silva, P. C.
  • Hahn, A. A.
  • Olanin, V.
  • Groll, D.
  • Maurer, S.
  • Roetzer, V.
  • Szymanski, W.
  • Procida-Kowalski, T.
  • Philipp, N.
  • Koch, A.
  • Bartkuhn, M.
  • Graumann, J.
  • Volckmann, R.
  • Koster, J.
  • Rossbach, O.
  • Salzig, D.
  • Dammann, R.
  • Sigges, C.
  • Halbritter, J.
  • Haerteis, S.
  • Richter, A. M.

Keywords

  • Humans
  • *Claudins/genetics
  • DNA Methylation
  • *Kidney Neoplasms/genetics
  • *Carcinoma, Renal Cell/genetics
  • Epigenesis, Genetic
  • Cell Line, Tumor
  • Gene Expression Regulation, Neoplastic
  • Gene Silencing
  • Promoter Regions, Genetic
  • CRISPR-Cas Systems
  • Male
  • Female
  • Tight Junctions
  • Mixed Function Oxygenases
  • Proto-Oncogene Proteins
  • Cldn10
  • CRISPR-Cas9
  • DNA (hyper)methylation
  • Epigenetic editing
  • Renal cell carcinoma (RCC)
  • Tumor suppressor
Publication details
DOI: 10.1186/s13148-025-01911-2
Journal: Clin Epigenetics
Pages: 102 
Number: 1
Work Type: Original
Location: UGMLC
Disease Area: LC
Partner / Member: JLU, UMR
Access-Number: 40524239


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