Literature DB >> 23558439

Deletion of the last five C-terminal amino acid residues of connexin43 leads to lethal ventricular arrhythmias in mice without affecting coupling via gap junction channels.

Indra Lübkemeier1, Robert Pascal Requardt, Xianming Lin, Philipp Sasse, René Andrié, Jan Wilko Schrickel, Halina Chkourko, Feliksas F Bukauskas, Jung-Sun Kim, Marina Frank, Daniela Malan, Jiong Zhang, Angela Wirth, Radoslaw Dobrowolski, Peter J Mohler, Stefan Offermanns, Bernd K Fleischmann, Mario Delmar, Klaus Willecke.   

Abstract

The cardiac intercalated disc harbors mechanical and electrical junctions as well as ion channel complexes mediating propagation of electrical impulses. Cardiac connexin43 (Cx43) co-localizes and interacts with several of the proteins located at intercalated discs in the ventricular myocardium. We have generated conditional Cx43D378stop mice lacking the last five C-terminal amino acid residues, representing a binding motif for zonula occludens protein-1 (ZO-1), and investigated the functional consequences of this mutation on cardiac physiology and morphology. Newborn and adult homozygous Cx43D378stop mice displayed markedly impaired and heterogeneous cardiac electrical activation properties and died from severe ventricular arrhythmias. Cx43 and ZO-1 were co-localized at intercalated discs in Cx43D378stop hearts, and the Cx43D378stop gap junction channels showed normal coupling properties. Patch clamp analyses of isolated adult Cx43D378stop cardiomyocytes revealed a significant decrease in sodium and potassium current densities. Furthermore, we also observed a significant loss of Nav1.5 protein from intercalated discs in Cx43D378stop hearts. The phenotypic lethality of the Cx43D378stop mutation was very similar to the one previously reported for adult Cx43 deficient (Cx43KO) mice. Yet, in contrast to Cx43KO mice, the Cx43 gap junction channel was still functional in the Cx43D378stop mutant. We conclude that the lethality of Cx43D378stop mice is independent of the loss of gap junctional intercellular communication, but most likely results from impaired cardiac sodium and potassium currents. The Cx43D378stop mice reveal for the first time that Cx43 dependent arrhythmias can develop by mechanisms other than impairment of gap junction channel function.

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Year:  2013        PMID: 23558439      PMCID: PMC3678986          DOI: 10.1007/s00395-013-0348-y

Source DB:  PubMed          Journal:  Basic Res Cardiol        ISSN: 0300-8428            Impact factor:   17.165


  58 in total

Review 1.  Desmosome-ion channel interactions and their possible role in arrhythmogenic cardiomyopathy.

Authors:  Mario Delmar
Journal:  Pediatr Cardiol       Date:  2012-03-10       Impact factor: 1.655

2.  Remodeling of mechanical junctions and of microtubule-associated proteins accompany cardiac connexin43 lateralization.

Authors:  Halina S Chkourko; Guadalupe Guerrero-Serna; Xianming Lin; Nedal Darwish; Joshua R Pohlmann; Keith E Cook; Jeffrey R Martens; Eli Rothenberg; Hassan Musa; Mario Delmar
Journal:  Heart Rhythm       Date:  2012-03-07       Impact factor: 6.343

Review 3.  Functional consequences of abnormal Cx43 expression in the heart.

Authors:  Magda S C Fontes; Toon A B van Veen; Jacques M T de Bakker; Harold V M van Rijen
Journal:  Biochim Biophys Acta       Date:  2011-08-03

4.  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

5.  Loss of αT-catenin alters the hybrid adhering junctions in the heart and leads to dilated cardiomyopathy and ventricular arrhythmia following acute ischemia.

Authors:  Jifen Li; Steven Goossens; Jolanda van Hengel; Erhe Gao; Lan Cheng; Koen Tyberghein; Xiying Shang; Riet De Rycke; Frans van Roy; Glenn L Radice
Journal:  J Cell Sci       Date:  2012-03-15       Impact factor: 5.285

6.  Interactions between ankyrin-G, Plakophilin-2, and Connexin43 at the cardiac intercalated disc.

Authors:  Priscila Y Sato; Wanda Coombs; Xianming Lin; Oxana Nekrasova; Kathleen J Green; Lori L Isom; Steven M Taffet; Mario Delmar
Journal:  Circ Res       Date:  2011-05-26       Impact factor: 17.367

7.  Connexin43 and the regulation of intercalated disc function.

Authors:  Mario Delmar; Feng-Xia Liang
Journal:  Heart Rhythm       Date:  2011-11-02       Impact factor: 6.343

8.  Connexin43 regulates sodium current; ankyrin-G modulates gap junctions: the intercalated disc exchanger.

Authors:  Mario Delmar
Journal:  Cardiovasc Res       Date:  2011-12-16       Impact factor: 10.787

9.  Reduced heterogeneous expression of Cx43 results in decreased Nav1.5 expression and reduced sodium current that accounts for arrhythmia vulnerability in conditional Cx43 knockout mice.

Authors:  John A Jansen; Maartje Noorman; Hassan Musa; Mèra Stein; Sanne de Jong; Roel van der Nagel; Thomas J Hund; Peter J Mohler; Marc A Vos; Toon A van Veen; Jacques M de Bakker; Mario Delmar; Harold V van Rijen
Journal:  Heart Rhythm       Date:  2011-11-16       Impact factor: 6.343

10.  Connexin43 modulates cell polarity and directional cell migration by regulating microtubule dynamics.

Authors:  Richard Francis; Xin Xu; Hyunsoo Park; Chin-Jen Wei; Stephen Chang; Bishwanath Chatterjee; Cecilia Lo
Journal:  PLoS One       Date:  2011-10-14       Impact factor: 3.240

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  33 in total

1.  Interacting Network of the Gap Junction (GJ) Protein Connexin43 (Cx43) is Modulated by Ischemia and Reperfusion in the Heart.

Authors:  Tania Martins-Marques; Sandra Isabel Anjo; Paulo Pereira; Bruno Manadas; Henrique Girão
Journal:  Mol Cell Proteomics       Date:  2015-08-27       Impact factor: 5.911

Review 2.  Mouse models of arrhythmogenic cardiovascular disease: challenges and opportunities.

Authors:  Jeanne M Nerbonne
Journal:  Curr Opin Pharmacol       Date:  2014-03-13       Impact factor: 5.547

3.  A 14-3-3 mode-1 binding motif initiates gap junction internalization during acute cardiac ischemia.

Authors:  James W Smyth; Shan-Shan Zhang; Jose M Sanchez; Samy Lamouille; Jacob M Vogan; Geoffrey G Hesketh; Tingting Hong; Gordon F Tomaselli; Robin M Shaw
Journal:  Traffic       Date:  2014-04-09       Impact factor: 6.215

Review 4.  Unmasking the molecular link between arrhythmogenic cardiomyopathy and Brugada syndrome.

Authors:  Javier Moncayo-Arlandi; Ramon Brugada
Journal:  Nat Rev Cardiol       Date:  2017-07-13       Impact factor: 32.419

Review 5.  Cardiac conduction in isolated hearts of genetically modified mice--Connexin43 and salts.

Authors:  Sharon A George; Steven Poelzing
Journal:  Prog Biophys Mol Biol       Date:  2015-11-25       Impact factor: 3.667

6.  GJA1-20k Arranges Actin to Guide Cx43 Delivery to Cardiac Intercalated Discs.

Authors:  Wassim A Basheer; Shaohua Xiao; Irina Epifantseva; Ying Fu; Andre G Kleber; TingTing Hong; Robin M Shaw
Journal:  Circ Res       Date:  2017-09-18       Impact factor: 17.367

Review 7.  Old cogs, new tricks: a scaffolding role for connexin43 and a junctional role for sodium channels?

Authors:  Rengasayee Veeraraghavan; Steven Poelzing; Robert G Gourdie
Journal:  FEBS Lett       Date:  2014-01-28       Impact factor: 4.124

Review 8.  Pathogenesis and management of Brugada syndrome.

Authors:  Juan Sieira; Gregory Dendramis; Pedro Brugada
Journal:  Nat Rev Cardiol       Date:  2016-09-15       Impact factor: 32.419

Review 9.  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

Review 10.  Arrhythmogenic cardiomyopathy and Brugada syndrome: diseases of the connexome.

Authors:  Esperanza Agullo-Pascual; Marina Cerrone; Mario Delmar
Journal:  FEBS Lett       Date:  2014-02-15       Impact factor: 4.124

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