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小鼠心脏中连接蛋白40基因表达的发育调控与传导系统的分化相关。

Developmental regulation of connexin 40 gene expression in mouse heart correlates with the differentiation of the conduction system.

作者信息

Delorme B, Dahl E, Jarry-Guichard T, Marics I, Briand J P, Willecke K, Gros D, Théveniau-Ruissy M

机构信息

Laboratoire de Génétique et Physiologie du Développement, Institut de Biologie du Développement de Marseille, Faculté des Sciences de Luminy, Université de la Méditerranee, France.

出版信息

Dev Dyn. 1995 Dec;204(4):358-71. doi: 10.1002/aja.1002040403.

DOI:10.1002/aja.1002040403
PMID:8601030
Abstract

In adult mouse heart, CX40 is expressed in the atria and the proximal part of the ventricular conduction system (the His bundle and the upper parts of the bundle branches). This cardiac tissue is specialized in the conduction of the electrical impulse. CX40 is the only mouse connexin known to be expressed in these parts of the adult conductive tissue and is thus considered as a marker of the conduction system. In the present report, we investigated CX40 expression and distribution during mouse heart development. We first demonstrate that CX40 mRNA is regulated throughout development, as are other heart connexin transcripts, i.e., CX37, CX43, and CX45, with a decreasing abundance as development proceeds. We also show that the CX40 transcript and protein are similarly regulated, CX40 being expressed as two different phosphorylated and un-phosphorylated forms of 41 and 40 kDa, respectively. Surprisingly, distribution studies demonstrated that CX40 is widely expressed in 11 days post-coitum (dpc) embryonic heart, where it is detected in both the atria and ventricle primordia. As development proceeds, the CX40 distribution pattern in the atria is maintained, whereas a more dynamic pattern is observed in the ventricles. From 14 dpc onwards, as the adult ventricular conduction system differentiates, CX40 decreases in the trabecular network and it is preferentially distributed in the ventricular conduction system. CX40 is thus the marker of the early differentiating conduction system. It is hypothesized that the conduction system is present in unorganized "embryonic" form at 11 dpc and transdifferentiates by 14 dpc into the adult conduction system.

摘要

在成年小鼠心脏中,CX40在心房和心室传导系统的近端部分(希氏束和束支上部)表达。这种心脏组织专门负责电冲动的传导。CX40是已知在成年传导组织这些部位表达的唯一小鼠连接蛋白,因此被视为传导系统的标志物。在本报告中,我们研究了小鼠心脏发育过程中CX40的表达和分布。我们首先证明,CX40 mRNA在整个发育过程中受到调控,其他心脏连接蛋白转录本,即CX37、CX43和CX45也是如此,随着发育进程丰度逐渐降低。我们还表明,CX40转录本和蛋白受到类似调控,CX40分别以41 kDa和40 kDa的两种不同磷酸化和未磷酸化形式表达。令人惊讶的是,分布研究表明,CX40在妊娠11天(dpc)的胚胎心脏中广泛表达,在心房和心室原基中均有检测到。随着发育进程,心房中CX40的分布模式得以维持,而心室中则观察到更动态的模式。从14 dpc开始,随着成年心室传导系统的分化,CX40在小梁网络中减少,并优先分布于心室传导系统。因此,CX40是早期分化传导系统的标志物。据推测,传导系统在11 dpc时以无组织的“胚胎”形式存在,并在14 dpc时转分化为成年传导系统。

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