Abnormal Cardiac Conduction and Morphogenesis in Connexin40 and Connexin43 Double-Deficient Mice
- 1 September 2000
- journal article
- research article
- Published by Wolters Kluwer Health in Circulation Research
- Vol. 87 (5) , 399-405
- https://doi.org/10.1161/01.res.87.5.399
Abstract
Connexin40-deficient (Cx40(-/-)/Cx43(+/+)) and connexin43-heterozygous knockout mice (Cx40(+/+)/Cx43(+/-)) are viable but show cardiac conduction abnormalities. The ECGs of adult double heterozygous animals (Cx40(+/-)/Cx43(+/-)) suggest additive effects of Cx40 and Cx43 haploinsufficiency on ventricular, but not on atrial, conduction. We also observed additive effects of both connexins on cardiac morphogenesis. Approximately half of the Cx40(-/-)/Cx43(+/+) embryos died during the septation period, and an additional 16% died after birth. The majority of the latter mice had cardiac hypertrophy in conjunction with common atrioventricular junction or a ventricular septal defect. All Cx40(-/-)/Cx43(+/-) progeny exhibited cardiac malformations and died neonatally. The most frequent defect was common atrioventricular junction with abnormal atrioventricular connection, which was more severe than that seen in Cx40(-/-)/Cx43(+/+) mice. Furthermore, muscular ventricular septal defects, premature closure of the ductus arteriosus, and subcutaneous edema were noticed in these embryos. Cx40(+/-)/Cx43(-/-) embryos showed the same phenotype (ie, obstructed right ventricular outflow tract) as reported for Cx40(+/+)/Cx43(-/-) mice. These findings demonstrate that Cx43 haploinsufficiency aggravates the abnormalities observed in the Cx40(-/-) phenotype, whereas Cx40 haploinsufficiency does not worsen the Cx43(-/-) phenotype. We conclude that the gap-junctional proteins Cx40 and Cx43 contribute to morphogenesis of the heart in an isotype-specific manner.Keywords
This publication has 18 references indexed in Scilit:
- Characterization of Conduction in the Ventricles of Normal and Heterozygous Cx43 Knockout Mice Using Optical MappingJournal of Cardiovascular Electrophysiology, 1999
- Cardiac Conduction Abnormalities in Mice Lacking the Gap Junction Protein Connexin40Journal of Cardiovascular Electrophysiology, 1999
- Molecular Cloning and Functional Expression of the Mouse Gap Junction Gene Connexin-57 in Human HeLa CellsPublished by Elsevier ,1999
- Doubly mutant mice, deficient in connexin32 and -43, show normal prenatal development of organs where the two gap junction proteins are expressed in the same cellsDevelopmental Genetics, 1999
- Alteration in Connexin 43 Gap Junction Gene Dosage Impairs Conotruncal Heart DevelopmentDevelopmental Biology, 1998
- The murine gap junction gene connexin36 is highly expressed in mouse retina and regulated during brain developmentFEBS Letters, 1998
- Cloning of a new gap junction gene (Cx36) highly expressed in mammalian brain neuronsEuropean Journal of Neuroscience, 1998
- CONNEXINS, CONNEXONS, AND INTERCELLULAR COMMUNICATIONAnnual Review of Biochemistry, 1996
- Developmental regulation of connexin 40 gene expression in mouse heart correlates with the differentiation of the conduction systemDevelopmental Dynamics, 1995
- Cardiac Malformation in Neonatal Mice Lacking Connexin43Science, 1995