Literature DB >> 26344792

Genotype-based clinical manifestation and treatment of Chinese long QT syndrome patients with KCNQ1 mutations - R380S and W305L.

Hui Zhou1, Wei Lai1, Wengen Zhu1, Jinyan Xie2, Xin Liu1, Yang Shen1, Ping Yuan1, Ying Liu1, Qin Cao2, Wenfeng He2, Kui Hong1.   

Abstract

UNLABELLED: Aim Most long QT syndrome patients are associated with genetic mutations. We aimed to investigate the clinical and biochemical characteristics and look for genotype-based preventive implications in Chinese long QT syndrome patients. Methods and results We identified two missense mutations of the KCNQ1 gene in two independent Chinese families, including a previously reported mutation R380S in the C-terminus and a novel mutation W305L in the P-loop domain of the Kv7.1 channel, respectively. The proband with R380S was an 11-year-old girl who suffered a prolonged corrected QT interval of 660 ms, recurrent syncope, and sudden cardiac death, whose father was an asymptomatic carrier. The mutation W305L was detected in a 36-year-old woman with long QT syndrome and her immediate family members including the proband's younger sister with an unexplained syncope, her son, and her elder daughter without symptoms. Metoprolol appeared to be effective in preventing arrhythmias and syncope in long QT syndrome patients with mutation W305L. Both R380S and W305L mutations led to "loss-of-function" of the Kv7.1 channel accounting for the clinical phenotypes.
CONCLUSIONS: We first show two missense KCNQ1 mutations - R380S and W305L - in Chinese long QT syndrome patients, resulting in the loss of protein function. Mutation W305L in the P-loop domain of the Kv7.1 may derive a pronounced benefit from β-blocker therapy in symptomatic long QT syndrome patients, whereas mutation R380S located in the C-terminus may be associated with a high risk of sudden cardiac death.

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Keywords:  KCNQ1; Kv7.1; genetic testing; long QT syndrome; β-blocker

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Year:  2015        PMID: 26344792     DOI: 10.1017/S1047951115001304

Source DB:  PubMed          Journal:  Cardiol Young        ISSN: 1047-9511            Impact factor:   1.093


  1 in total

1.  Even pore-localizing missense variants at highly conserved sites in KCNQ1-encoded Kv7.1 channels may have wild-type function and not cause type 1 long QT syndrome: Do not rely solely on the genetic test company's interpretation.

Authors:  Ashley Paquin; Dan Ye; David J Tester; Jamie D Kapplinger; Michael T Zimmermann; Michael J Ackerman
Journal:  HeartRhythm Case Rep       Date:  2017-12-11
  1 in total

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