首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Cardiac morphogenetic defects and conduction abnormalities in mice homozygously deficient for connexin40 and heterozygously deficient for connexin45.
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Cardiac morphogenetic defects and conduction abnormalities in mice homozygously deficient for connexin40 and heterozygously deficient for connexin45.

机译:连接蛋白40纯合缺陷和连接蛋白45杂合缺陷的小鼠心脏形态发生缺陷和传导异常。

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摘要

Connexin40 (Cx40) and connexin45 (Cx45) are involved in both cardiac morphogenesis and propagation of electrical activity. We found that Cx40/Cx45 double deficiency (Cx40(-/-)/Cx45(+/-)) causes a variety of cardiac defects leading to high mortality during embryonic development and at birth. The majority of Cx40(-/-)/Cx45(+/-) embryos and postnatal mice suffered from atrioventricular septal defects. Additional cardiac abnormalities, e.g., ventricular septal defects and abnormal myocardial arrangement, occurred at lower abundance. Electrocardiograms of Cx40(-/-)/Cx45(+/+) and Cx40(-/-)/Cx45(+/-) mice revealed prolongation of P-wave, PQ interval and QRS duration compared to controls. Interestingly, in Cx40(-/-)/Cx45(+/-) mice, PQ interval and QRS duration were significantly prolonged compared to Cx40(-/-)/Cx45(+/+) mice. We conclude that the gap junctional proteins Cx40 and Cx45 have overlapping and partially compensatory functions with regard to heart morphogenesis and cardiac conduction. Cx45 might be one of the genetic modifiers that can cause variations in the phenotype of connexin40-deficient animals. Our findings may be particularly relevant for understanding molecular factors contributing to human congenital cardiac diseases.
机译:连接蛋白40(Cx40)和连接蛋白45(Cx45)参与心脏形态发生和电活动的传播。我们发现Cx40 / Cx45双重缺陷(Cx40(-/-)/ Cx45(+/-))会导致多种心脏缺陷,从而导致胚胎发育和出生时的高死亡率。大多数Cx40(-/-)/ Cx45(+/-)胚胎和出生后的小鼠患有房室间隔缺损。较低的丰度会发生其他心脏异常,例如室间隔缺损和异常的心肌排列。与对照组相比,Cx40(-/-)/ Cx45(+ / +)和Cx40(-/-)/ Cx45(+/-)小鼠的心电图显示P波,PQ间隔和QRS持续时间延长。有趣的是,在Cx40(-/-)/ Cx45(+/-)小鼠中,与Cx40(-/-)/ Cx45(+ / +)小鼠相比,PQ间隔和QRS持续时间显着延长。我们得出的结论是,间隙连接蛋白Cx40和Cx45在心脏形态发生和心脏传导方面具有重叠和部分补偿的功能。 Cx45可能是一种遗传修饰因子,可以导致连接蛋白40缺陷动物的表型变异。我们的发现可能对理解导致人类先天性心脏病的分子因素特别有用。

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