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常见的非裔美国人 SCN5A-S1103Y 多态性与 SCN5A-R680H 突变相互作用,增加晚期 Na 电流。

The common African American polymorphism SCN5A-S1103Y interacts with mutation SCN5A-R680H to increase late Na current.

机构信息

Division of Cardiovascular Medicine, Department of Medicine, University of Wisconsin, Madison, Wisconsin 53792, USA.

出版信息

Physiol Genomics. 2011 May 13;43(9):461-6. doi: 10.1152/physiolgenomics.00198.2010. Epub 2011 Mar 8.

Abstract

The common polymorphism SCN5A-S1103Y (∼13% allelic frequency in African Americans) is a risk factor for arrhythmia, sudden unexplained death (SUD), and sudden infant death syndrome. Prompted by a case of autopsy-negative SUD in a 23-year-old African American man who collapsed while playing football, we hypothesized that S1103Y interacted with other SCN5A variants to pathologically modify sodium current (I(Na)). Mutational analysis of arrhythmia-associated genes in the victim revealed the variants SCN5A-R680H and SCN5A-S1103Y. These variants were made both separately and in the same cDNA construct of the alternative splice variant backgrounds (SCN5A-Q1077del and Q1077) and expressed in HEK293 cells. In the most abundant SCN5A-Q1077del, late I(Na) for S1103Y alone was not significantly different from wild type (WT). However, late I(Na) for R680H, R680H+S1103Y (coexpressed), and R680H/S1103Y (on the same cDNA) was increased 2.1-, 3.4-, and 3.6-fold, respectively, compared with WT. Intracellular acidosis (pH 6.7) increased late I(Na) for S1103Y, R680H, R680H+S1103Y, and R680H/S1103Y by 2.2-, 2.4-, 5.0-, and 5.5-fold, respectively, compared with WT at pH 6.7. Expression in the less abundant SCN5A-Q1077 showed no increased late I(Na). This is the initial report of a functional interaction for the common polymorphism S1103Y with another mutation in the major transcript Q1077del of SCN5A. The "double hit" and environmental factor of acidosis may have converged to cause arrhythmic sudden death in this case.

摘要

常见的 SCN5A-S1103Y 多态性(在非裔美国人中约占 13%的等位基因频率)是心律失常、不明原因猝死(SUD)和婴儿猝死综合征的危险因素。由于一名 23 岁的非裔美国男子在踢足球时突然猝死,尸检未发现异常,促使我们假设 S1103Y 与其他 SCN5A 变体相互作用,病理性地改变钠电流(I(Na))。对受害者的心律失常相关基因进行突变分析,发现了 SCN5A-R680H 和 SCN5A-S1103Y 两种变体。这些变体分别在替代剪接变体背景(SCN5A-Q1077del 和 Q1077)的 cDNA 构建体中单独表达,并在 HEK293 细胞中表达。在最常见的 SCN5A-Q1077del 中,S1103Y 单独的晚期 I(Na)与野生型(WT)没有显著差异。然而,R680H、R680H+S1103Y(共表达)和 R680H/S1103Y(在同一 cDNA 上)的晚期 I(Na)分别增加了 2.1 倍、3.4 倍和 3.6 倍,与 WT 相比。细胞内酸中毒(pH 6.7)使 S1103Y、R680H、R680H+S1103Y 和 R680H/S1103Y 的晚期 I(Na)分别增加了 2.2 倍、2.4 倍、5.0 倍和 5.5 倍,与 pH 6.7 下的 WT 相比。在较少见的 SCN5A-Q1077 表达中,晚期 I(Na)没有增加。这是首次报道常见的 S1103Y 多态性与 SCN5A 的主要转录物 Q1077del 的另一种突变之间存在功能相互作用。“双重打击”和酸中毒的环境因素可能在这种情况下导致心律失常性猝死。

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