Epigenome-wide DNA methylation association study of CHIP provides insight into perturbed gene regulation.

CHIP 的全基因组 DNA 甲基化关联研究揭示了基因调控紊乱的机制

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作者:Kirmani Sara, Huan Tianxiao, Van Amburg Joseph C, Joehanes Roby, Uddin Md Mesbah, Nguyen Ngoc Quynh H, Yu Bing, Brody Jennifer A, Fornage Myriam, Bressler Jan, Sotoodehnia Nona, Ong David A, Puddu Fabio, Floyd James S, Ballantyne Christie M, Psaty Bruce M, Raffield Laura M, Natarajan Pradeep, Conneely Karen N, Weinstock Joshua S, Carson April P, Lange Leslie A, Ferrier Kendra, Heard-Costa Nancy L, Murabito Joanne, Bick Alexander G, Levy Daniel
With age, hematopoietic stem cells can acquire somatic mutations in leukemogenic genes that confer a proliferative advantage in a phenomenon termed CHIP. How these mutations result in increased risk for numerous age-related diseases remains poorly understood. We conduct a multiracial meta-analysis of EWAS of CHIP in the Framingham Heart Study, Jackson Heart Study, Cardiovascular Health Study, and Atherosclerosis Risk in Communities cohorts (N = 8196) to elucidate the molecular mechanisms underlying CHIP and illuminate how these changes influence cardiovascular disease risk. We functionally validate the EWAS findings using human hematopoietic stem cell models of CHIP. We then use expression quantitative trait methylation analysis to identify transcriptomic changes associated with CHIP-associated CpGs. Causal inference analyses reveal 261 CHIP-associated CpGs associated with cardiovascular traits and all-cause mortality (FDR adjusted p-value < 0.05). Taken together, our study reports the epigenetic changes impacted by CHIP and their associations with age-related disease outcomes.

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