Integrative multi-omic cancer profiling reveals DNA methylation patterns associated with therapeutic vulnerability and cell-of-origin

Wen-Wei Liang(James S. McDonnell Foundation), Rita Jui-Hsien Lu(James S. McDonnell Foundation), Reyka G. Jayasinghe(James S. McDonnell Foundation), Steven M. Foltz(James S. McDonnell Foundation), Eduard Porta‐Pardo(Barcelona Supercomputing Center), Yifat Geffen(Broad Institute), Michael C. Wendl(James S. McDonnell Foundation), Rossana Lazcano(The University of Texas MD Anderson Cancer Center), Iga Kołodziejczak(Medical University of Warsaw), Yizhe Song(James S. McDonnell Foundation), Akshay Govindan(James S. McDonnell Foundation), Elizabeth G. Demicco(Mount Sinai Hospital), Xiang Li(James S. McDonnell Foundation), Yize Li(James S. McDonnell Foundation), Sunantha Sethuraman(James S. McDonnell Foundation), Samuel Payne(Brigham Young University), David Fenyö(Institute for Systems Biology), Henry Rodriguez(Cancer Clinic), Maciej Wiznerowicz(Poznan University of Medical Sciences), Hui Shen(Van Andel Institute), D.R. Mani(Broad Institute), Karin Rodland(Pacific Northwest National Laboratory), Alexander J. Lazar(The University of Texas MD Anderson Cancer Center), Ana I. Robles(Cancer Clinic), Li Ding(James S. McDonnell Foundation), François Aguet, Yo Akiyama(Institute for Systems Biology), Eunkyung An, Shankara Anand, Meenakshi Anurag, Özgün Babur, Jasmin Bavarva, Chet Birger, Michael J. Birrer(James S. McDonnell Foundation), Anna Calinawan, Lewis C. Cantley, Song Cao(James S. McDonnell Foundation), Steve Carr(James S. McDonnell Foundation), Michele Ceccarelli, Daniel Chan, Arul M. Chinnaiyan, Hanbyul Cho, Shrabanti Chowdhury, Marcin Cieślik, Karl R. Clauser, Antonio Colaprico, Daniel Cui Zhou, Felipe da Veiga Leprevost, Corbin Day, Mohan Dhanasekaran, Marcin J. Domagalski, Yongchao Dou, Brian Druker, Nathan Edwards, Matthew J. Ellis, Myvizhi Esai Selvan, Alicia Francis, Gad Getz, Michael A. Gillette(James S. McDonnell Foundation), Tania Gonzalez Robles(Cancer Clinic), Sara J.C. Gosline, Zeynep H. Gümüş, David I. Heiman(Institute for Systems Biology), Tara Hiltke, Runyu Hong, Galen Hostetter, Yingwei Hu(Van Andel Institute), Chen Huang, Emily M. Huntsman, Antonio Iavarone, Eric J. Jaehnig, Scott Jewel, Jiayi Ji, Wen Jiang(James S. McDonnell Foundation), Jared L. Johnson, Lizabeth Katsnelson(Mount Sinai Hospital), Karen A. Ketchum, Karsten Krug, Chandan Kumar‐Sinha, Jonathan T. Lei, Yuxing Liao, Caleb M. Lindgren, Tao Liu, Wenke Liu, Weiping Ma(Poznan University of Medical Sciences), Fernanda Martins Rodrigues, Wilson McKerrow, Mehdi Mesri, Alexey I. Nesvizhskii, Chelsea J. Newton, Robert Oldroyd, Gilbert S. Omenn, Amanda G. Paulovich, Francesca Petralia, Pietro Pugliese, Boris Reva, Kelly V. Ruggles, Dmitry Rykunov, Shankha Satpathy, Sara R. Savage, Eric E. Schadt, Michael Schnaubelt(James S. McDonnell Foundation), Tobias Schraink, Zhiao Shi, Dick Smith, Xiaoyu Song(James S. McDonnell Foundation), Vasileios Stathias, Erik Storrs, Jimin Tan, Nadezhda V. Terekhanova, Ratna R. Thangudu, Mathangi Thiagarajan, Nicole Tignor, Joshua Wang, Liang-Bo Wang, Pei Wang, Ying Wang, Bo Wen(James S. McDonnell Foundation), Yige Wu, Lijun Yao, Tomer M. Yaron, Xinpei Yi(James S. McDonnell Foundation), Bing Zhang, Hui Zhang(Van Andel Institute), Qing Zhang, Xu Zhang, Zhen Zhang, Daniel W. Chan, Saravana M. Dhanasekaran, Stephan C. Schürer, Richard D. Smith, Matthew A. Wyczalkowski
Cancer Cell
August 14, 2023
Cited by 101Open Access
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Abstract

DNA methylation plays a critical role in establishing and maintaining cellular identity. However, it is frequently dysregulated during tumor development and is closely intertwined with other genetic alterations. Here, we leveraged multi-omic profiling of 687 tumors and matched non-involved adjacent tissues from the kidney, brain, pancreas, lung, head and neck, and endometrium to identify aberrant methylation associated with RNA and protein abundance changes and build a Pan-Cancer catalog. We uncovered lineage-specific epigenetic drivers including hypomethylated FGFR2 in endometrial cancer. We showed that hypermethylated STAT5A is associated with pervasive regulon downregulation and immune cell depletion, suggesting that epigenetic regulation of STAT5A expression constitutes a molecular switch for immunosuppression in squamous tumors. We further demonstrated that methylation subtype-enrichment information can explain cell-of-origin, intra-tumor heterogeneity, and tumor phenotypes. Overall, we identified cis-acting DNA methylation events that drive transcriptional and translational changes, shedding light on the tumor's epigenetic landscape and the role of its cell-of-origin.


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