Literature DB >> 19695459

D85N, a KCNE1 polymorphism, is a disease-causing gene variant in long QT syndrome.

Yukiko Nishio1, Takeru Makiyama, Hideki Itoh, Tomoko Sakaguchi, Seiko Ohno, Yin-Zhi Gong, Satoshi Yamamoto, Tomoya Ozawa, Wei-Guang Ding, Futoshi Toyoda, Mihoko Kawamura, Masaharu Akao, Hiroshi Matsuura, Takeshi Kimura, Toru Kita, Minoru Horie.   

Abstract

OBJECTIVES: This study aims to address whether D85N, a KCNE1 polymorphism, is a gene variant that causes long QT syndrome (LQTS) phenotype.
BACKGROUND: KCNE1 encodes the beta-subunit of cardiac voltage-gated K(+) channels and causes LQTS, which is characterized by the prolongation of the QT interval and torsades de pointes, a lethal arrhythmia. D85N, a KCNE1 polymorphism, is known to be a functional variant associated with drug-induced LQTS.
METHODS: In order to elucidate the prevalence and clinical significance of this polymorphism, we performed genetic screening in 317 LQTS probands. For comparison, we examined its presence in 496 healthy control subjects. We also conducted biophysical assays for the D85N variant in mammalian cells.
RESULTS: The allele frequency for D85N carriers was 0.81% in healthy people. In contrast, among LQTS probands, there were 1 homozygous and 23 heterozygous carriers (allele frequency 3.9%). Seven of 23 heterozygous carriers had additional mutations in LQTS-related genes, and 3 female subjects had documented factors predisposing to the symptom. After excluding these probands, the D85N prevalence was significantly higher compared with control subjects (allele frequency 2.1%, p < 0.05). In a heterologous expression study with Chinese hamster ovarian cells, KCNE1-D85N was found to exert significant loss-of-function effects on both KCNQ1- and KCNH2-encoded channel currents.
CONCLUSIONS: The KCNE1-D85N polymorphism was significantly more frequent in our LQTS probands. The functional variant is a disease-causing gene variant of LQTS phenotype that functions by interacting with KCNH2 and KCNQ1. Since its allele frequency was approximately 1% among control individuals, KCNE1-D85N may be a clinically important genetic variant. 2009 by the American College of Cardiology Foundation

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Year:  2009        PMID: 19695459     DOI: 10.1016/j.jacc.2009.06.005

Source DB:  PubMed          Journal:  J Am Coll Cardiol        ISSN: 0735-1097            Impact factor:   24.094


  59 in total

1.  Cardiac channel molecular autopsy: insights from 173 consecutive cases of autopsy-negative sudden unexplained death referred for postmortem genetic testing.

Authors:  David J Tester; Argelia Medeiros-Domingo; Melissa L Will; Carla M Haglund; Michael J Ackerman
Journal:  Mayo Clin Proc       Date:  2012-06       Impact factor: 7.616

2.  Arrhythmia formation in subclinical ("silent") long QT syndrome requires multiple insults: quantitative mechanistic study using the KCNQ1 mutation Q357R as example.

Authors:  Thomas O'Hara; Yoram Rudy
Journal:  Heart Rhythm       Date:  2011-09-25       Impact factor: 6.343

3.  Risk of syncope in family members who are genotype-negative for a family-associated long-QT syndrome mutation.

Authors:  Alon Barsheshet; Arthur J Moss; Scott McNitt; Slava Polonsky; Coeli M Lopes; Wojciech Zareba; Jennifer L Robinson; Michael J Ackerman; Jesaia Benhorin; Elizabeth S Kaufman; Jeffrey A Towbin; G Michael Vincent; Ming Qi; Ilan Goldenberg
Journal:  Circ Cardiovasc Genet       Date:  2011-08-10

Review 4.  Drug-induced long QT syndrome.

Authors:  Prince Kannankeril; Dan M Roden; Dawood Darbar
Journal:  Pharmacol Rev       Date:  2010-12       Impact factor: 25.468

5.  Long QT syndrome type 5-Lite: Defining the clinical phenotype associated with the potentially proarrhythmic p.Asp85Asn-KCNE1 common genetic variant.

Authors:  Conor M Lane; John R Giudicessi; Dan Ye; David J Tester; Ram K Rohatgi; J Martijn Bos; Michael J Ackerman
Journal:  Heart Rhythm       Date:  2018-04-03       Impact factor: 6.343

Review 6.  Clinical and genetic determinants of torsade de pointes risk.

Authors:  Andrew J Sauer; Christopher Newton-Cheh
Journal:  Circulation       Date:  2012-04-03       Impact factor: 29.690

Review 7.  Genetic determinants of response to cardiovascular drugs.

Authors:  Quinn S Wells; Jessica T Delaney; Dan M Roden
Journal:  Curr Opin Cardiol       Date:  2012-05       Impact factor: 2.161

8.  Electrophysiological characterization of a large set of novel variants in the SCN5A-gene: identification of novel LQTS3 and BrS mutations.

Authors:  Beatriz Ortiz-Bonnin; Susanne Rinné; Robin Moss; Anne K Streit; Michael Scharf; Katrin Richter; Anika Stöber; Arne Pfeufer; Gunnar Seemann; Stefan Kääb; Britt-Maria Beckmann; Niels Decher
Journal:  Pflugers Arch       Date:  2016-06-11       Impact factor: 3.657

9.  Association of KCNE1 genetic polymorphisms with atrial fibrillation in a Chinese Han population.

Authors:  Juan Yao; Yi-Tong Ma; Xiang Xie; Fen Liu; Bang-Dang Chen
Journal:  Genet Test Mol Biomarkers       Date:  2012-09-28

10.  Relationship of common candidate gene variants to electrocardiographic T-wave peak to T-wave end interval and T-wave morphology parameters.

Authors:  Kimmo Porthan; Annukka Marjamaa; Matti Viitasalo; Heikki Väänänen; Antti Jula; Lauri Toivonen; Markku S Nieminen; Christopher Newton-Cheh; Veikko Salomaa; Kimmo Kontula; Lasse Oikarinen
Journal:  Heart Rhythm       Date:  2010-03-04       Impact factor: 6.343

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