生物
DNA甲基化
表观遗传学
转录组
亚硫酸氢盐测序
前列腺癌
甲基化
表观遗传学
照明菌甲基化试验
遗传学
DNMT3B型
基因
癌症
基因组
癌症研究
基因表达
作者
Shuang G. Zhao,William S. Chen,Haolong Li,Adam Foye,Meng Zhang,Martin Sjöström,Rahul Aggarwal,Denise Playdle,Arnold Liao,Joshi J. Alumkal,Rajdeep Das,Jonathan Chou,Junjie T. Hua,Travis J. Barnard,Adina Bailey,Eric D. Chow,Marc D. Perry,Ha X. Dang,Rendong Yang,Ruhollah Moussavi-Baygi
出处
期刊:Nature Genetics
[Nature Portfolio]
日期:2020-07-13
卷期号:52 (8): 778-789
被引量:266
标识
DOI:10.1038/s41588-020-0648-8
摘要
Although DNA methylation is a key regulator of gene expression, the comprehensive methylation landscape of metastatic cancer has never been defined. Through whole-genome bisulfite sequencing paired with deep whole-genome and transcriptome sequencing of 100 castration-resistant prostate metastases, we discovered alterations affecting driver genes that were detectable only with integrated whole-genome approaches. Notably, we observed that 22% of tumors exhibited a novel epigenomic subtype associated with hypermethylation and somatic mutations in TET2, DNMT3B, IDH1 and BRAF. We also identified intergenic regions where methylation is associated with RNA expression of the oncogenic driver genes AR, MYC and ERG. Finally, we showed that differential methylation during progression preferentially occurs at somatic mutational hotspots and putative regulatory regions. This study is a large integrated study of whole-genome, whole-methylome and whole-transcriptome sequencing in metastatic cancer that provides a comprehensive overview of the important regulatory role of methylation in metastatic castration-resistant prostate cancer.
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