4.7 Article

The histone H2B-specific ubiquitin ligase RNF20/hBRE1 acts as a putative tumor suppressor through selective regulation of gene expression

Journal

GENES & DEVELOPMENT
Volume 22, Issue 19, Pages 2664-2676

Publisher

COLD SPRING HARBOR LAB PRESS, PUBLICATIONS DEPT
DOI: 10.1101/gad.1703008

Keywords

RNF20; BRE1; H2B ubiquitylation; tumor suppressor; transcription

Funding

  1. Sheldon Adelson Medical Research Foundation [R37 CA40099]
  2. National Cancer Institute
  3. Prostate Cancer Foundation (Israel) Center of Excellence
  4. Yad Abraham Center for Cancer Diagnosis [301/08/1468]
  5. Grant Agency of the Czech Republic [MZ0MOU2005]

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Histone monoubiquitylation is implicated in critical regulatory processes. We explored the roles of histone H2B ubiquitylation in human cells by reducing the expression of hBRE1/RNF20, the major H2B-specific E3 ubiquitin ligase. While H2B ubiquitylation is broadly associated with transcribed genes, only a subset of genes was transcriptionally affected by RNF20 depletion and abrogation of H2B ubiquitylation. Gene expression dependent on RNF20 includes histones H2A and H2B and the p53 tumor suppressor. In contrast, RNF20 suppresses the expression of several proto-oncogenes, which reside preferentially in closed chromatin and are modestly transcribed despite bearing marks usually associated with high transcription rates. Remarkably, RNF20 depletion augmented the transcriptional effects of epidermal growth factor (EGF), increased cell migration, and elicited transformation and tumorigenesis. Furthermore, frequent RNF20 promoter hypermethylation was observed in tumors. RNF20 may thus be a putative tumor suppressor, acting through selective regulation of a distinct subset of genes.

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