Literature DB >> 21895724

A dual mechanism for I(Ks) current reduction by the pathogenic mutation KCNQ1-S277L.

Jerri Chen1, Michael Weber, Sung Yon Um, Christine A Walsh, Yingying Tang, Thomas V McDonald.   

Abstract

BACKGROUND: The hereditary long QT syndrome is characterized by prolonged ventricular repolarization that can be caused by mutations to the KCNQ1 gene, which encodes the α subunits of the cardiac potassium channel complex that carries the I(Ks) current (the β subunits are encoded by KCNE1). In this study, we characterized a deleterious variant, KCNQ1-S277L, found in a patient who presented with sudden cardiac death in the presence of cocaine use.
METHODS: The KCNQ1-S277L mutation was analyzed via whole-cell patch clamp, confocal imaging, surface biotinylation assays, and computer modeling.
RESULTS: Homomeric mutant KCNQ1-S277L channels were unable to carry current, either alone or with KCNE1. When co-expressed in a 50/50 ratio with WT KCNQ1, current density was reduced in a dominant-negative manner, with the residual current predominantly wild type. There was no change in the activation rate and minimal changes to voltage-dependent activation for both KCNQ1 current and I(Ks) current. Immunofluorescence confocal imaging revealed reduced surface expression of mutant KCNQ1-S277L, which was biochemically confirmed by surface biotinylation showing a 44% decrease in mutant surface expression. Expression of KCNQ1-S277L with human ether-a-go-go-related gene (HERG) did not significantly affect HERG protein or current density compared to KCNQ1-WT co-expression.
CONCLUSION: The KCNQ1-S277L mutation causes biophysical defects that result in dominant-negative reduction in KCNQ1 and I(Ks) current density, and a trafficking defect that results in reduced surface expression, both without affecting HERG/I(Kr) . KCNQ1-S277L mutation in the proband resulted in defective channels that compromised repolarization reserve, thereby enhancing the arrhythmic susceptibility to pharmacological blockage of I(Kr) current. ©2011, The Authors. Journal compilation ©2011 Wiley Periodicals, Inc.

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Year:  2011        PMID: 21895724      PMCID: PMC3237915          DOI: 10.1111/j.1540-8159.2011.03190.x

Source DB:  PubMed          Journal:  Pacing Clin Electrophysiol        ISSN: 0147-8389            Impact factor:   1.976


  40 in total

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3.  Cocaine blocks HERG, but not KvLQT1+minK, potassium channels.

Authors:  S Zhang; S Rajamani; Y Chen; Q Gong; Y Rong; Z Zhou; A Ruoho; C T January
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4.  Inhibition of HERG potassium channels by cocaethylene: a metabolite of cocaine and ethanol.

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5.  Influence of opioid agonists on cardiac human ether-a-go-go-related gene K(+) currents.

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6.  Effects of cocaine and its major metabolites on the HERG-encoded potassium channel.

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7.  Mechanisms of I(Ks) suppression in LQT1 mutants.

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Review 1.  Potassium-channel mutations and cardiac arrhythmias--diagnosis and therapy.

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Authors:  Byron N Roberts; Pei-Chi Yang; Steven B Behrens; Jonathan D Moreno; Colleen E Clancy
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3.  Mutation location and IKs regulation in the arrhythmic risk of long QT syndrome type 1: the importance of the KCNQ1 S6 region.

Authors:  Peter J Schwartz; Cristina Moreno; Maria-Christina Kotta; Matteo Pedrazzini; Lia Crotti; Federica Dagradi; Silvia Castelletti; Kristina H Haugaa; Isabelle Denjoy; Maria A Shkolnikova; Paul A Brink; Marshall J Heradien; Sandrine R M Seyen; Roel L H M G Spätjens; Carla Spazzolini; Paul G A Volders
Journal:  Eur Heart J       Date:  2021-12-07       Impact factor: 29.983

Review 4.  Structures Illuminate Cardiac Ion Channel Functions in Health and in Long QT Syndrome.

Authors:  Kathryn R Brewer; Georg Kuenze; Carlos G Vanoye; Alfred L George; Jens Meiler; Charles R Sanders
Journal:  Front Pharmacol       Date:  2020-05-04       Impact factor: 5.810

5.  Molecular autopsy: using the discovery of a novel de novo pathogenic variant in the KCNH2 gene to inform healthcare of surviving family.

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