Literature DB >> 20606116

Paradigm of genetic mosaicism and lone atrial fibrillation: physiological characterization of a connexin 43-deletion mutant identified from atrial tissue.

Isabelle L Thibodeau1, Ji Xu, Qiuju Li, Gele Liu, Khanh Lam, John P Veinot, David H Birnie, Douglas L Jones, Andrew D Krahn, Robert Lemery, Bruce J Nicholson, Michael H Gollob.   

Abstract

BACKGROUND: Atrial fibrillation (AF) is the most common sustained arrhythmia observed in otherwise healthy individuals. Most lone AF cases are nonfamilial, leading to the assumption that a primary genetic origin is unlikely. In this study, we provide data supporting a novel paradigm that atrial tissue-specific genetic defects may be associated with sporadic cases of lone AF. METHODS AND
RESULTS: We sequenced the entire coding region of the connexin 43 (Cx43) gene (GJA1) from atrial tissue and lymphocytes of 10 unrelated subjects with nonfamilial, lone AF who had undergone surgical pulmonary vein isolation. In the atrial tissue of 1 patient, we identified a novel frameshift mutation caused by a single nucleotide deletion (c.932delC) that predicted 36 aberrant amino acids followed by a premature stop codon, leading to truncation of the C-terminal domain of Cx43. The mutation was absent from the lymphocyte DNA of the patient, indicating genetic mosaicism. Protein trafficking studies demonstrated intracellular retention of the mutant protein and a dominant-negative effect on gap junction formation of both wild-type Cx43 and Cx40. Electrophysiological studies revealed no electrical coupling of cells expressing the mutant protein alone and significant reductions in coupling when coexpressed with wild-type connexins.
CONCLUSIONS: This study reports atrial tissue genetic mosaicism of a novel loss-of-function Cx43 mutation associated with lone AF. These findings implicate somatic genetic defects of Cx43 as a potential cause of AF and support the paradigm that sporadic, nonfamilial cases of lone AF may arise from genetic mosaicism that creates heterogeneous coupling patterns, predisposing the tissue to reentrant arrhythmias.

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Year:  2010        PMID: 20606116     DOI: 10.1161/CIRCULATIONAHA.110.961227

Source DB:  PubMed          Journal:  Circulation        ISSN: 0009-7322            Impact factor:   29.690


  64 in total

1.  A connexin40 mutation associated with a malignant variant of progressive familial heart block type I.

Authors:  Naomasa Makita; Akiko Seki; Naokata Sumitomo; Halina Chkourko; Shigetomo Fukuhara; Hiroshi Watanabe; Wataru Shimizu; Connie R Bezzina; Can Hasdemir; Hideo Mugishima; Takeru Makiyama; Alban Baruteau; Estelle Baron; Minoru Horie; Nobuhisa Hagiwara; Arthur A M Wilde; Vincent Probst; Hervé Le Marec; Dan M Roden; Naoki Mochizuki; Jean-Jacques Schott; Mario Delmar
Journal:  Circ Arrhythm Electrophysiol       Date:  2012-01-13

Review 2.  Connexin43 cardiac gap junction remodeling: lessons from genetically engineered murine models.

Authors:  Benjamin F Remo; Steven Giovannone; Glenn I Fishman
Journal:  J Membr Biol       Date:  2012-06-22       Impact factor: 1.843

3.  Connexin43 ablation in foetal atrial myocytes decreases electrical coupling, partner connexins, and sodium current.

Authors:  Thomas Desplantez; Megan L McCain; Philippe Beauchamp; Ghislaine Rigoli; Barbara Rothen-Rutishauser; Kevin Kit Parker; Andre G Kleber
Journal:  Cardiovasc Res       Date:  2012-01-27       Impact factor: 10.787

4.  Atrial fibrillation-associated connexin40 mutants make hemichannels and synergistically form gap junction channels with novel properties.

Authors:  Dakshesh Patel; Joanna Gemel; Qin Xu; Adria R Simon; Xianming Lin; Arvydas Matiukas; Eric C Beyer; Richard D Veenstra
Journal:  FEBS Lett       Date:  2014-01-20       Impact factor: 4.124

5.  Association of atrial fibrillation with gene polymorphisms of connexin 40 and angiotensin II receptor type 1 in Chongming adults of Shanghai.

Authors:  Shuxin Hou; Yingmin Lu; Damin Huang; Xiaohan Luo; Dongmei Yue; Jinchun Zhang
Journal:  Int J Clin Exp Med       Date:  2015-07-15

6.  Downregulation of connexin43 by microRNA-130a in cardiomyocytes results in cardiac arrhythmias.

Authors:  Appledene Osbourne; Tyler Calway; Michael Broman; Saoirse McSharry; Judy Earley; Gene H Kim
Journal:  J Mol Cell Cardiol       Date:  2014-05-10       Impact factor: 5.000

Review 7.  Gene therapy to treat cardiac arrhythmias.

Authors:  Rossana Bongianino; Silvia G Priori
Journal:  Nat Rev Cardiol       Date:  2015-04-28       Impact factor: 32.419

Review 8.  A contemporary review on the genetic basis of atrial fibrillation.

Authors:  Jason D Roberts; Michael H Gollob
Journal:  Methodist Debakey Cardiovasc J       Date:  2014 Jan-Mar

Review 9.  Designer gap junctions that prevent cardiac arrhythmias.

Authors:  Eugene Kim; Glenn I Fishman
Journal:  Trends Cardiovasc Med       Date:  2012-12-13       Impact factor: 6.677

Review 10.  Trafficking highways to the intercalated disc: new insights unlocking the specificity of connexin 43 localization.

Authors:  Shan-Shan Zhang; Robin M Shaw
Journal:  Cell Commun Adhes       Date:  2014-02
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