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KCNE3 mutation V17M identified in a patient with lone atrial fibrillation: Cell Physiol Biochem

Anne-Kristine Meinild-Lundby, L. S. Ravn, J. H. Svendsen, S. Hauns, Søren-Peter Olesen, Nicole Schmitt

    81 Citations (Scopus)

    Abstract

    BACKGROUND: Atrial fibrillation (AF) is the most common cardiac rhythm disorder with a lifetime risk for development of 25% for people aged 40 or older. In this study we aim for the functional assessment of a mutation in KCNE3 identified in a proband with early-onset lone AF. METHODS: Screening of genomic DNA from the proband led to identification of a KCNE3 V17M missense mutation. We heterologously expressed the accessory channel subunit in Xenopus laevis oocytes together with its known interacting potassium channel alpha-subunits. Further, we applied RT-PCR on human total RNA from left and right atria and ventricle. RESULTS: Electrophysiological recordings revealed an increased activity of Kv4.3/KCNE3 and Kv11.1/KCNE3 generated currents by the mutation, thereby conferring susceptibility of mutation carriers to faster cardiac action potential repolarization and thus vulnerability to re-entrant wavelets in the atria and thereby AF. CONCLUSION: Here we report a novel mutation in KCNE3 identified in a proband with early-onset lone AF possibly leading to gain-of-function of several cardiac currents. We suggest abnormalities in the KCNE3 gene as a potential genetic risk factor for initiation and/or maintenance of AF.
    Original languageEnglish
    JournalCellular Physiology and Biochemistry
    Volume21
    Issue number1-3
    Pages (from-to)47-54
    Number of pages8
    ISSN1015-8987
    DOIs
    Publication statusPublished - 2008

    Keywords

    • Amino Acid Sequence *Amino Acid Substitution Atrial Fibrillation/*genetics Base Sequence DNA Mutational Analysis Humans Ion Channel Gating Male Methionine/*genetics Middle Aged Molecular Sequence Data Mutation/*genetics Potassium Channels, Voltage-Gated/chemistry/*genetics Valine/*genetics

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