William Harvey Research Institute, Clinical Pharmacology, Queen Mary University of London, London, UK.
Barts Heart Centre, St Bartholomew's Hospital, Barts Health NHS trust, London, UK.
Nat Commun. 2023 Mar 14;14(1):1411. doi: 10.1038/s41467-023-36997-w.
The 3-dimensional spatial and 2-dimensional frontal QRS-T angles are measures derived from the vectorcardiogram. They are independent risk predictors for arrhythmia, but the underlying biology is unknown. Using multi-ancestry genome-wide association studies we identify 61 (58 previously unreported) loci for the spatial QRS-T angle (N = 118,780) and 11 for the frontal QRS-T angle (N = 159,715). Seven out of the 61 spatial QRS-T angle loci have not been reported for other electrocardiographic measures. Enrichments are observed in pathways related to cardiac and vascular development, muscle contraction, and hypertrophy. Pairwise genome-wide association studies with classical ECG traits identify shared genetic influences with PR interval and QRS duration. Phenome-wide scanning indicate associations with atrial fibrillation, atrioventricular block and arterial embolism and genetically determined QRS-T angle measures are associated with fascicular and bundle branch block (and also atrioventricular block for the frontal QRS-T angle). We identify potential biology involved in the QRS-T angle and their genetic relationships with cardiovascular traits and diseases, may inform future research and risk prediction.
三维空间 QRS-T 角和二维额面 QRS-T 角是从心向量图中得出的测量值。它们是心律失常的独立风险预测因子,但潜在的生物学机制尚不清楚。我们使用多民族全基因组关联研究,确定了 61 个(其中 58 个是以前未报道过的)空间 QRS-T 角的位点(N=118780)和 11 个额面 QRS-T 角的位点(N=159715)。在 61 个空间 QRS-T 角位点中,有 7 个位点与其他心电图指标无关。在与心脏和血管发育、肌肉收缩和肥大相关的途径中观察到了富集。与经典心电图特征的成对全基因组关联研究表明,与 PR 间期和 QRS 持续时间存在共同的遗传影响。表型全基因组扫描表明与心房颤动、房室传导阻滞和动脉栓塞有关,并且由遗传决定的 QRS-T 角测量值与束支传导阻滞(以及额面 QRS-T 角的房室传导阻滞)有关。我们确定了 QRS-T 角所涉及的潜在生物学机制,以及它们与心血管特征和疾病的遗传关系,这可能为未来的研究和风险预测提供信息。