Brugada综合征
钠通道
错义突变
心室颤动
右束支阻滞
内科学
室性心动过速
心源性猝死
点突变
突变
心脏病学
医学
生物
遗传学
化学
心电图
基因
钠
有机化学
作者
Dagmar I. Keller,Huimin Huang,Jian‐Li Zhao,Robert Frank,Vanessa Suárez,Etienne Delacrétaz,Marijke Brink,Stefan Osswald,N. Schwick,Mohamed Chahine
出处
期刊:Cardiovascular Research
[Oxford University Press]
日期:2006-03-04
卷期号:70 (3): 521-529
被引量:85
标识
DOI:10.1016/j.cardiores.2006.02.030
摘要
Brugada syndrome (BS) is an inherited electrical cardiac disorder characterized by right bundle branch block pattern and ST segment elevation in leads V1 to V3 on surface electrocardiogram that can potentially lead to malignant ventricular tachycardia and sudden cardiac death. About 20% of patients have mutations in the only so far identified gene, SCN5A, which encodes the alpha-subunit of the human cardiac voltage-dependent sodium channel (hNa(v)1.5). Fever has been shown to unmask or trigger the BS phenotype, but the associated molecular and the biophysical mechanisms are still poorly understood. We report on the identification and biophysical characterization of a novel heterozygous missense mutation in SCN5A, F1344S, in a 42-year-old male patient showing the BS phenotype leading to ventricular fibrillation during fever.The mutation was reproduced in vitro using site-directed mutagenesis and characterized using the patch clamp technique in the whole-cell configuration.The biophysical characterization of the channels carrying the F1344S mutation revealed a 10 mV mid-point shift of the G/V curve toward more positive voltages during activation. Raising the temperature to 40.5 degrees C further shifted the mid-point activation by 18 mV and significantly changed the slope factor in Na(v)1.5/F1344S mutant channels from -6.49 to -10.27 mV.Our findings indicate for the first time that the shift in activation and change in the slope factor at a higher temperature mimicking fever could reduce sodium currents' amplitude and trigger the manifestation of the BS phenotype.
科研通智能强力驱动
Strongly Powered by AbleSci AI