作者
Heng Pan, Loic Renaud, Ronan Chaligne, Johannes Bloehdorn, Eugen Tausch, Daniel Mertens, Anna Maria Fink, Kirsten Fischer, Chao Zhang, Doron Betel, Andreas Gnirke, Marcin Imielinski, Jerome Moreaux, Michael Hallek, Alexander Meissner, Stephan Stilgenbauer, Catherine J Wu, Olivier Elemento, Dan A Landau
发表日期
2021/9/1
期刊
Cancer discovery
卷号
11
期号
9
页码范围
2266-2281
出版商
American Association for Cancer Research
简介
Epigenetic alterations, such as promoter hypermethylation, may drive cancer through tumor suppressor gene inactivation. However, we have limited ability to differentiate driver DNA methylation (DNAme) changes from passenger events. We developed DNAme driver inference–MethSig–accounting for the varying stochastic hypermethylation rate across the genome and between samples. We applied MethSig to bisulfite sequencing data of chronic lymphocytic leukemia (CLL), multiple myeloma, ductal carcinoma in situ, glioblastoma, and to methylation array data across 18 tumor types in TCGA. MethSig resulted in well-calibrated quantile–quantile plots and reproducible inference of likely DNAme drivers with increased sensitivity/specificity compared with benchmarked methods. CRISPR/Cas9 knockout of selected candidate CLL DNAme drivers provided a fitness advantage with and without …
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