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22 个位点的常见变异与 QRS 持续时间和心脏心室传导有关。

Common variants in 22 loci are associated with QRS duration and cardiac ventricular conduction.

机构信息

Division of Cardiology, Department of Medicine, University of Washington, Seattle, Washington, USA.

出版信息

Nat Genet. 2010 Dec;42(12):1068-76. doi: 10.1038/ng.716. Epub 2010 Nov 14.

Abstract

The QRS interval, from the beginning of the Q wave to the end of the S wave on an electrocardiogram, reflects ventricular depolarization and conduction time and is a risk factor for mortality, sudden death and heart failure. We performed a genome-wide association meta-analysis in 40,407 individuals of European descent from 14 studies, with further genotyping in 7,170 additional Europeans, and we identified 22 loci associated with QRS duration (P < 5 × 10(-8)). These loci map in or near genes in pathways with established roles in ventricular conduction such as sodium channels, transcription factors and calcium-handling proteins, but also point to previously unidentified biologic processes, such as kinase inhibitors and genes related to tumorigenesis. We demonstrate that SCN10A, a candidate gene at the most significantly associated locus in this study, is expressed in the mouse ventricular conduction system, and treatment with a selective SCN10A blocker prolongs QRS duration. These findings extend our current knowledge of ventricular depolarization and conduction.

摘要

心电图的 QRS 间期反映了心室去极化和传导时间,从 Q 波的起点到 S 波的终点,是死亡率、猝死和心力衰竭的一个危险因素。我们在来自 14 项研究的 40407 名欧洲血统个体中进行了全基因组关联荟萃分析,并在另外 7170 名欧洲人中进行了进一步基因分型,确定了 22 个与 QRS 持续时间相关的位点(P < 5 × 10(-8))。这些位点位于或靠近钠离子通道、转录因子和钙处理蛋白等心室传导途径中已有明确作用的基因内,也指向了以前未被识别的生物学过程,如激酶抑制剂和与肿瘤发生相关的基因。我们证明了 SCN10A,这是本研究中关联最显著的位点的候选基因,在小鼠心室传导系统中表达,并且选择性 SCN10A 阻滞剂的治疗延长了 QRS 持续时间。这些发现扩展了我们对心室去极化和传导的现有认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36d8/3338195/21072f8b26dc/nihms247823f1.jpg

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