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在小鼠发育过程中心肌细胞特异性敲除连接蛋白43。

Cardiomyocyte-restricted deletion of connexin43 during mouse development.

作者信息

Eckardt Dominik, Kirchhoff Susanne, Kim Jung-Sun, Degen Joachim, Theis Martin, Ott Thomas, Wiesmann Frank, Doevendans Pieter A, Lamers Wouter H, de Bakker Jacques M T, van Rijen Harold V M, Schneider Michael D, Willecke Klaus

机构信息

Institut für Genetik, Universität Bonn, Römerstrasse 164, D-53117 Bonn, Germany.

出版信息

J Mol Cell Cardiol. 2006 Dec;41(6):963-71. doi: 10.1016/j.yjmcc.2006.07.017. Epub 2006 Sep 11.

Abstract

Although the gap junction protein Connexin43 (Cx43) is expressed in various cell types during embryonic development, mice with a global inactivation of Cx43 survive until birth but die perinatally due to an obstruction of the right ventricular outflow tract of the heart. To analyze the functional role of Cx43 gap junction channels in cardiomyocytes of the developing and early postnatal heart, we used alphaMyHC-Cre mice to ablate Cx43 expression selectively in cardiomyocytes during development. We found efficient ablation of Cx43 in cardiomyocytes during embryonic development starting at embryonic day (ED) 9.5 in the ventricular wall. Analyses of cardiac Cx43 protein at birth indicated complete loss of Cx43 expression in cardiomyocytes. All mice homozygously deficient for Cx43 in cardiomyocytes died until postnatal day (PD) 16. Heterozygous inactivation of Cx43 in cardiomyocytes neither altered atrial nor ventricular activation, but homozygous ablation led to changes in ventricular activation, i.e. significant decrease of the QRS-amplitude and prolonged QRS-duration already at PD 4. Cardiac morphology was similar to controls until PD 1, but subtle morphological changes were found in a subgroup of mutant mice at later stages. Besides narrowing of the ventricular outlet region at PD 6, hypertrophy of ventricular myocardium was found at PD 12. Our data indicate that complete inactivation of cardiac Cx43 during development predisposes hearts to develop postnatal morphological alterations, which differ from outflow tract obstructions described for Cx43 null mice. In addition, complete loss of cardiac Cx43 protein during development correlates with slowed ventricular activation at PD 4, impairs viability during development, and leads to death of all mutant mice until PD 16.

摘要

尽管缝隙连接蛋白连接蛋白43(Cx43)在胚胎发育过程中在多种细胞类型中表达,但Cx43全球失活的小鼠可存活至出生,但由于心脏右心室流出道阻塞在围产期死亡。为了分析Cx43缝隙连接通道在发育中和出生后早期心脏心肌细胞中的功能作用,我们使用α-肌球蛋白重链-Cre小鼠在发育过程中选择性地消除心肌细胞中的Cx43表达。我们发现在胚胎发育期间从胚胎第(ED)9.5天开始心室壁心肌细胞中的Cx43被有效消除。出生时对心脏Cx43蛋白的分析表明心肌细胞中Cx43表达完全丧失。所有心肌细胞中Cx43纯合缺陷的小鼠在出生后第(PD)16天前死亡。心肌细胞中Cx43的杂合失活既未改变心房也未改变心室激活,但纯合消除导致心室激活发生变化,即在PD 4时QRS波幅显著降低且QRS持续时间延长。直到PD 1时心脏形态与对照相似,但在后期的一组突变小鼠中发现了细微的形态学变化。除了在PD 6时心室出口区域变窄外,在PD 12时还发现心室心肌肥厚。我们的数据表明,发育过程中心脏Cx43的完全失活使心脏易发生出生后形态学改变,这与Cx43基因敲除小鼠所描述的流出道阻塞不同。此外,发育过程中心脏Cx43蛋白的完全丧失与PD 4时心室激活减慢相关,损害发育过程中的生存能力,并导致所有突变小鼠在PD 16前死亡。

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