An Interdomain KCNH2 Mutation Produces an Intermediate Long QT Syndrome

被引:4
作者
Osterbur, Marika L. [1 ]
Zheng, Renjian [2 ]
Marion, Robert [3 ]
Walsh, Christine [4 ]
McDonald, Thomas V. [1 ,2 ,5 ]
机构
[1] Albert Einstein Coll Med, Dept Mol Pharmacol, Bronx, NY 10467 USA
[2] Albert Einstein Coll Med, Wilf Cardiovasc Res Inst, Bronx, NY 10467 USA
[3] Childrens Hosp Montefiore, Div Genet, Dept Pediat, Bronx, NY USA
[4] Childrens Hosp Montefiore, Div Cardiol, Dept Pediat, Bronx, NY USA
[5] Albert Einstein Coll Med, Dept Med, Div Cardiol, Bronx, NY 10467 USA
关键词
KCNH2; hERG; ventricular arrhythmia; deactivation; LQT2; HERG POTASSIUM CHANNELS; K+ CHANNEL; STRUCTURE PREDICTION; CARDIAC-ARRHYTHMIA; SEVERE PHENOTYPE; TERMINAL DOMAIN; DEACTIVATION; INACTIVATION; MECHANISM; VARIANTS;
D O I
10.1002/humu.22805
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Hereditary long QT syndrome is caused by deleterious mutation in one of several genetic loci, including locus LQT2 that contains the KCNH2 gene (or hERG, human ether-a-go-go related gene), causing faulty cardiac repolarization. Here, we describe and characterize a novel mutation, p.Asp219Val in the hERG channel, identified in an 11-year-old male with syncope and prolonged QT interval. Genetic sequencing showed a nonsynonymous variation in KCNH2 (c.656A>T: amino acid p.Asp219Val). p.Asp219Val resides in a region of the channel predicted to be unstructured and flexible, located between the PAS (Per-Arnt-Sim) domain and its interaction sites in the transmembrane domain. The p.Asp219Val hERG channel produced K+ current that activated with modest changes in voltage dependence. Mutant channels were also slower to inactivate, recovered from inactivation more readily and demonstrated a significantly accelerated deactivation rate compared with the slow deactivation of wild-type channels. The intermediate nature of the biophysical perturbation is consistent with the degree of severity in the clinical phenotype. The findings of this study demonstrate a previously unknown role of the proximal N-terminus in deactivation and support the hypothesis that the proximal N-terminal domain is essential in maintaining slow hERG deactivation.
引用
收藏
页码:764 / 773
页数:10
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