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常见的候选基因变异与普通人群的QT间期时长有关。

Common candidate gene variants are associated with QT interval duration in the general population.

作者信息

Marjamaa A, Newton-Cheh C, Porthan K, Reunanen A, Lahermo P, Väänänen H, Jula A, Karanko H, Swan H, Toivonen L, Nieminen M S, Viitasalo M, Peltonen L, Oikarinen L, Palotie A, Kontula K, Salomaa V

机构信息

Research Program in Molecular Medicine, Biomedicum Helsinki, University of Helsinki, Helsinki, Finland.

出版信息

J Intern Med. 2009 Apr;265(4):448-58. doi: 10.1111/j.1365-2796.2008.02026.x. Epub 2009 Oct 25.

Abstract

OBJECTIVES

QT interval prolongation is associated with increased risk of sudden cardiac death at the population level. As 30-40% of the QT-interval variability is heritable, we tested the association of common LQTS and NOS1AP gene variants with QT interval in a Finnish population-based sample.

METHODS

We genotyped 12 common LQTS and NOS1AP genetic variants in Health 2000, an epidemiological sample of 5043 Finnish individuals, using Sequenom MALDI-TOF mass spectrometry. ECG parameters were measured from digital 12-lead ECGs and QT intervals were adjusted for age, gender and heart rate with a nomogram (Nc) method derived from the present study population.

RESULTS

The KCNE1 D85N minor allele (frequency 1.4%) was associated with a 10.5 ms (SE 1.6) or 0.57 SD prolongation of the adjusted QT(Nc) interval (P=3.6 x 10(-11)) in gender-pooled analysis. In agreement with previous studies, we replicated the association with QT(Nc) interval with minor alleles of KCNH2 intronic SNP rs3807375 [1.6 ms (SE 0.4) or 0.08 SD, P=4.7 x 10(-5)], KCNH2 K897T [-2.6 ms (SE 0.5) or -0.14 SD, P=2.1 x 10(-7)] and NOSA1P variants including rs2880058 [4.0 ms (SE 0.4) or 0.22 SD, P=3.2 x 10(-24)] under additive models.

CONCLUSIONS

We demonstrate that each additional copy of the KCNE1 D85N minor allele is associated with a considerable 10.5 ms prolongation of the age-, gender- and heart rate-adjusted QT interval and could thus modulate repolarization-related arrhythmia susceptibility at the population level. In addition, we robustly confirm the previous findings that three independent KCNH2 and NOSA1P variants are associated with adjusted QT interval.

摘要

目的

在人群水平上,QT间期延长与心脏性猝死风险增加相关。由于30%-40%的QT间期变异性具有遗传性,我们在一个基于芬兰人群的样本中测试了常见的长QT综合征(LQTS)和NOS1AP基因变异与QT间期的关联。

方法

我们使用Sequenom MALDI-TOF质谱法,对来自芬兰的5043名个体的流行病学样本Health 2000中的12种常见LQTS和NOS1AP基因变异进行基因分型。从数字化12导联心电图中测量心电图参数,并使用基于本研究人群得出的列线图(Nc)方法对QT间期进行年龄、性别和心率校正。

结果

在合并性别分析中,KCNE1基因D85N次要等位基因(频率1.4%)与校正后的QT(Nc)间期延长10.5毫秒(标准误1.6)或0.57标准差相关(P=3.6×10⁻¹¹)。与先前研究一致,我们在KCNH2内含子单核苷酸多态性rs3807375的次要等位基因与QT(Nc)间期的关联中得到了重复验证[1.6毫秒(标准误0.4)或0.08标准差,P=4.7×10⁻⁵],在KCNH2基因K897T位点上也得到了重复验证[-2.6毫秒(标准误0.5)或-0.14标准差,P=2.1×10⁻⁷],以及在包括rs2880058在内的NOSA1P变异位点上也得到了重复验证[4.0毫秒(标准误0.4)或0.22标准差,P=3.2×10⁻²⁴](加性模型)。

结论

我们证明,KCNE1基因D85N次要等位基因每增加一个拷贝,与经年龄、性别和心率校正后的QT间期延长10.5毫秒显著相关,因此可能在人群水平上调节与复极相关的心律失常易感性。此外,我们有力地证实了先前的发现,即三个独立的KCNH2和NOSA1P变异与校正后的QT间期相关。

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