| Literature DB >> 28893800 |
Xiaosai Yao1,2, Jing Tan3,4, Kevin Junliang Lim5, Joanna Koh1, Wen Fong Ooi1, Zhimei Li3, Dachuan Huang3, Manjie Xing1,5,6, Yang Sun Chan1, James Zhengzhong Qu1, Su Ting Tay5, Giovani Wijaya3, Yue Ning Lam1, Jing Han Hong5, Ai Ping Lee-Lim1, Peiyong Guan3, Michelle Shu Wen Ng2, Cassandra Zhengxuan He1, Joyce Suling Lin1, Tannistha Nandi1, Aditi Qamra1,7, Chang Xu5,8, Swe Swe Myint3, James O J Davies9, Jian Yuan Goh1, Gary Loh1, Bryan C Tan10, Steven G Rozen5, Qiang Yu1, Iain Bee Huat Tan1,11, Christopher Wai Sam Cheng12, Shang Li5, Kenneth Tou En Chang13, Puay Hoon Tan14, David Lawrence Silver9, Alexander Lezhava15, Gertrud Steger16, Jim R Hughes9, Bin Tean Teh17,3,5,8,18, Patrick Tan19,5,8,18.
Abstract
Protein-coding mutations in clear cell renal cell carcinoma (ccRCC) have been extensively characterized, frequently involving inactivation of the von Hippel-Lindau (VHL) tumor suppressor. Roles for noncoding cis-regulatory aberrations in ccRCC tumorigenesis, however, remain unclear. Analyzing 10 primary tumor/normal pairs and 9 cell lines across 79 chromatin profiles, we observed pervasive enhancer malfunction in ccRCC, with cognate enhancer-target genes associated with tissue-specific aspects of malignancy. Superenhancer profiling identified ZNF395 as a ccRCC-specific and VHL-regulated master regulator whose depletion causes near-complete tumor elimination in vitro and in vivoVHL loss predominantly drives enhancer/superenhancer deregulation more so than promoters, with acquisition of active enhancer marks (H3K27ac, H3K4me1) near ccRCC hallmark genes. Mechanistically, VHL loss stabilizes HIF2α-HIF1β heterodimer binding at enhancers, subsequently recruiting histone acetyltransferase p300 without overtly affecting preexisting promoter-enhancer interactions. Subtype-specific driver mutations such as VHL may thus propagate unique pathogenic dependencies in ccRCC by modulating epigenomic landscapes and cancer gene expression.Significance: Comprehensive epigenomic profiling of ccRCC establishes a compendium of somatically altered cis-regulatory elements, uncovering new potential targets including ZNF395, a ccRCC master regulator. Loss of VHL, a ccRCC signature event, causes pervasive enhancer malfunction, with binding of enhancer-centric HIF2α and recruitment of histone acetyltransferase p300 at preexisting lineage-specific promoter-enhancer complexes. Cancer Discov; 7(11); 1284-305. ©2017 AACR.See related commentary by Ricketts and Linehan, p. 1221This article is highlighted in the In This Issue feature, p. 1201. ©2017 American Association for Cancer Research.Entities:
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Year: 2017 PMID: 28893800 DOI: 10.1158/2159-8290.CD-17-0375
Source DB: PubMed Journal: Cancer Discov ISSN: 2159-8274 Impact factor: 39.397