孟德尔随机化
生物
增强子
全基因组关联研究
遗传学
候选基因
基因
表达数量性状基因座
可药性
生物信息学
基因表达
单核苷酸多态性
遗传变异
基因型
作者
Arnaud Chignon,Samuel Mathieu,Anne Rufiange,Déborah Argaud,Pierre Voisine,Yohan Bossé,Benoît J. Arsenault,Sébastien Thériault,Patrick Mathieu
标识
DOI:10.1186/s40246-022-00381-4
摘要
Abstract Coronary artery disease (CAD) is a multifactorial disorder, which is partly heritable. Herein, we implemented a mapping of CAD-associated candidate genes by using genome-wide enhancer-promoter conformation (H3K27ac-HiChIP) and expression quantitative trait loci (eQTL). Enhancer-promoter anchor loops from human coronary artery smooth muscle cells (HCASMC) explained 22% of the heritability for CAD. 3D enhancer-promoter genome mapping of CAD-genes in HCASMC was enriched in vascular eQTL genes. By using colocalization and Mendelian randomization analyses, we identified 58 causal candidate vascular genes including some druggable targets ( MAP3K11 , CAMK1D , PDGFD , IPO9 and CETP ). A network analysis of causal candidate genes was enriched in TGF beta and MAPK pathways. The pharmacologic inhibition of causal candidate gene MAP3K11 in vascular SMC reduced the expression of athero-relevant genes and lowered cell migration, a cardinal process in CAD. Genes connected to enhancers are enriched in vascular eQTL and druggable genes causally associated with CAD.
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