DNA甲基化
表观遗传学
生物
甲基化
突变
分子生物学
遗传学
表观遗传学
基因
CpG站点
癌症研究
基因表达
作者
Charles C.T. Hindmarch,François Potus,Ruaa Al‐Qazazi,Benjamin P. Ott,William C. Nichols,Michael J. Rauh,Stephen L. Archer
摘要
ABSTRACT Epigenetic changes in gene expression due to DNA methylation regulate pulmonary vascular structure and function. Genetic or acquired alterations in DNA methylation/demethylation can promote the development of pulmonary arterial hypertension (PAH). Here, we performed epigenome‐wide mapping of DNA methylation in whole blood from 10 healthy people and 19 age/sex‐matched PAH patients from the PAH Biobank. Exome sequencing confirmed the absence of known mutations in PAH‐associated gene variants identifying subjects with or without mutations of TET2, a putative PAH gene encoding the demethylating enzyme, TET2. DNA of patients with PAH and no TET2 mutation was hypermethylated compared to healthy controls. Patients with PAH and a TET2 mutation had greater DNA CpG methylation than mutation‐free PAH patients. Unique Differentially Methylated Regions (DMR) were more common in patients with PAH with TET2 mutations (1164) than in PAH without mutations (262). We correlated methylome findings with a public PAH transcriptomic RNA dataset, prioritizing targets that are both hypermethylated in our cohort and downregulated at the RNA level. Relative to controls, functional analysis reveals enriched functions related to T cell differentiation in PAH patients with a TET2 mutation. We identified genes with downregulated expression that were hypermethylated in PAH patients (with or without a TET2 mutation). In both cases, a conserved T cell phenotype emerged. Pan‐chromosomal hypermethylation in PAH is greatest in patients with TET2 mutations. Observed hypermethylation of genes involved in the pathogenesis of PAH, such as EIF2AK4, and transcription factors that regulate T cell development, such as TCF7, merit further study and may contribute to the inflammation in PAH.
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