Literature DB >> 11922902

Redistribution of connexin45 in gap junctions of connexin43-deficient hearts.

Carolyn M Johnson1, Evelyn M Kanter, Karen G Green, James G Laing, Tetsuo Betsuyaku, Eric C Beyer, Thomas H Steinberg, Jeffrey E Saffitz, Kathryn A Yamada.   

Abstract

OBJECTIVE: Adult ventricular myocytes express two gap junction channel proteins: connexin43 (Cx43) and connexin45 (Cx45). Cx43-deficient mice exhibit slow ventricular epicardial conduction, suggesting that Cx43 plays an important role in intercellular coupling in the ventricle. Cx45 is much less abundant than Cx43 in working ventricular myocytes. Its role in ventricular conduction has not been defined, nor is it known whether expression or distribution of Cx45 is altered in Cx43-deficient mice. The present study was undertaken to determine (1) whether expression of Cx45 is upregulated and (2) whether gap junction structure and distribution are altered in Cx43-deficient mice.
METHODS: Ventricular tissue from neonatal Cx43(+/+), Cx43(+/-) and Cx43(-/-) and adult Cx43(+/+) and Cx43(+/-) mice was analyzed by immunoblotting and confocal immunofluorescence microscopy.
RESULTS: Total Cx45 protein abundance measured by immunoblotting was not different in Cx43-deficient or null hearts compared to wild-type control hearts. However, the amount and distribution of Cx45 immunoreactive signal measured by quantitative confocal analysis were markedly reduced in both Cx43(+/-) and Cx43(-/-) hearts.
CONCLUSION: Although the total content of Cx45 is not upregulated in Cx43-deficient hearts, the localization of Cx45 to cardiac gap junctions depends on the expression level of Cx43 and is dramatically altered in mice that express no Cx43.

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Year:  2002        PMID: 11922902     DOI: 10.1016/s0008-6363(01)00522-3

Source DB:  PubMed          Journal:  Cardiovasc Res        ISSN: 0008-6363            Impact factor:   10.787


  11 in total

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3.  Dynamic model for ventricular junctional conductance during the cardiac action potential.

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4.  The relevance of non-excitable cells for cardiac pacemaker function.

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6.  Modulation of cardiac gap junction expression and arrhythmic susceptibility.

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7.  Electrical coupling and propagation in engineered ventricular myocardium with heterogeneous expression of connexin43.

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8.  Protein kinase Cepsilon mediates salutary effects on electrical coupling induced by ischemic preconditioning.

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10.  Arrhythmogenic properties of dismantling cadherin-mediated adhesion in murine hearts.

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Journal:  J Biomed Res       Date:  2010-07
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