Committee on Molecular Metabolism and Nutrition, Biological Sciences Division, The University of Chicago, Chicago, IL, USA.
Department of Medicine, Biological Sciences Division, The University of Chicago, Chicago, IL, USA.
J Cell Biol. 2024 Mar 4;223(3). doi: 10.1083/jcb.202211125. Epub 2024 Jan 17.
Vascular homeostasis and pathophysiology are tightly regulated by mechanical forces generated by hemodynamics. Vascular disorders such as atherosclerotic diseases largely occur at curvatures and bifurcations where disturbed blood flow activates endothelial cells while unidirectional flow at the straight part of vessels promotes endothelial health. Integrated analysis of the endothelial transcriptome, the 3D epigenome, and human genetics systematically identified the SNP-enriched cistrome in vascular endothelium subjected to well-defined atherosclerosis-prone disturbed flow or atherosclerosis-protective unidirectional flow. Our results characterized the endothelial typical- and super-enhancers and underscored the critical regulatory role of flow-sensitive endothelial super-enhancers. CRISPR interference and activation validated the function of a previously unrecognized unidirectional flow-induced super-enhancer that upregulates antioxidant genes NQO1, CYB5B, and WWP2, and a disturbed flow-induced super-enhancer in endothelium which drives prothrombotic genes EDN1 and HIVEP in vascular endothelium. Our results employing multiomics identify the cis-regulatory architecture of the flow-sensitive endothelial epigenome related to atherosclerosis and highlight the regulatory role of super-enhancers in mechanotransduction mechanisms.
血管稳态和病理生理学受到血液动力学产生的机械力的严格调节。血管疾病(如动脉粥样硬化疾病)主要发生在曲率和分叉处,在这些部位,紊乱的血流激活内皮细胞,而血管直段的单向流动则促进内皮细胞健康。对内皮转录组、3D 表观基因组和人类遗传学的综合分析系统地鉴定了在明确的动脉粥样硬化易患紊乱流或动脉粥样硬化保护单向流作用下血管内皮中富含 SNP 的顺式作用元件组。我们的结果描述了内皮典型和超级增强子,并强调了流动敏感的内皮超级增强子的关键调节作用。CRISPR 干扰和激活验证了先前未被识别的单向流诱导超级增强子的功能,该增强子上调抗氧化基因 NQO1、CYB5B 和 WWP2,以及内皮中紊乱流诱导超级增强子,该增强子在血管内皮中驱动促血栓形成基因 EDN1 和 HIVEP。我们采用多组学的研究结果确定了与动脉粥样硬化相关的血流敏感内皮表观基因组的顺式调控结构,并强调了超级增强子在机械转导机制中的调节作用。