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Genome-Wide Association Study-Driven Gene-Set Analyses, Genetic, and Functional Follow-Up Suggest GLIS1 as a Susceptibility Gene for Mitral Valve Prolapse

机译:全基因组关联Study-Driven基因簇分析、遗传和功能随访建议GLIS1作为二尖瓣的易感基因瓣脱垂

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BACKGROUND: Mitral valve prolapse (MVP) is a common heart valve disease, the most frequent indication for valve repair or replacement. MVP is characterized by excess extracellular matrix secretion and cellular disorganization, which leads to bulky valves that are unable to coapt correctly during ventricular systole resulting in mitral regurgitation, and it is associated with sudden cardiac death. Here we aim to characterize globally the biological mechanisms underlying genetic susceptibility to MVP to better characterize its triggering mechanisms.METHODS: We applied i-GSEA4GWAS and DEPICT, two pathway enrichment tools to MVP genome-wide association studies. We followed-up the association with MVP in an independent dataset of cases and controls. This research was conducted using the UK Biobank Resource. Immunohistochemistry staining for Glis1 (GLIS family zinc finger 1) was conducted in developing heart of mice. Knockdown of Glisl using morpholinos was performed in zebrafish animals 72 hours postfertilization. RESULTS : We show that genes at risk loci are involved in biological functions relevant to actin filament organization, cytoskeleton biology, and cardiac development. The enrichment for positive regulation of transcription, cell proliferation, and migration motivated the follow-up of GLIS1, a transcription factor from the Kruppel-like zinc finger family. In combination with previously available data, we now report a genome-wide significant association with MVP (odds ratio, 1.20; p=4.36x10-10), indicating that Glisl is expressed during embryonic development predominantly in nuclei of endothelial and interstitial cells of mitral valves in mouse. We also show that Glisl knockdown causes atrioventricular regurgitation in developing hearts in zebrafish. CONCLUSIONS: Our findings define globally molecular and cellular mechanisms underlying common genetic susceptibility to MVP and implicate established and unprecedented mechanisms. Through the GLIS1 association and function, we point at regulatory functions during cardiac development as common mechanisms to mitral valve degeneration.
机译:背景:二尖瓣脱垂(MVP)常见的心脏瓣膜疾病,最常见的指示阀维修或更换。特点是细胞外基质过度分泌和细胞无序导致无法coapt笨重的阀门在心室收缩导致正确二尖瓣返流,它是相关的心脏性猝死。在全球范围内的潜在的生物机制遗传易感性MVP更好描述它的触发机制。我们应用i-GSEA4GWAS和描述,两个途径浓缩MVP全基因组关联的工具研究。在一个独立的数据集的情况下和控制。本研究是利用英国生物库进行的资源。(gli家庭锌指1)进行发展中老鼠的心脏。在斑马鱼中使用执行吗啉代postfertilization动物72小时。表明风险位点基因参与生物功能相关的肌动蛋白丝生物组织、细胞骨架和心脏发展。转录调节,细胞增殖,和迁移动机GLIS1的后续转录因子的Kruppel-like锌手指的家庭。可用数据,我们现在报告全基因组重要与MVP(优势比,1.20;表达在胚胎发育期间主要核内皮和二尖瓣瓣膜间质细胞的老鼠。还表明,Glisl降价的原因房室返流在发展中心在斑马鱼。定义全局的分子和细胞机制潜在的常见的遗传易感性MVP和涉及建立和前所未有的机制。函数,我们在监管职能心脏发展共同的机制二尖瓣退行性变。

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