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连接蛋白基因产物在小鼠心血管系统早期发育阶段的表达模式。

Expression pattern of connexin gene products at the early developmental stages of the mouse cardiovascular system.

作者信息

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

机构信息

Laboratoire de Génétique et Physiologie du Développement, UMR C9943,Institut de Biologie du Développement de Marseille, France.

出版信息

Circ Res. 1997 Sep;81(3):423-37. doi: 10.1161/01.res.81.3.423.

Abstract

The synchronized contraction of myocytes in cardiac muscle requires the structural and functional integrity of the gap junctions present between these cells. Gap junctions are clusters of intercellular channels formed by transmembrane proteins of the connexin (Cx) family. Products of several Cx genes have been identified in the mammalian heart (eg, Cx45, Cx43, Cx40, and Cx37), and their expression was shown to be regulated during the development of the myocardium. Cx43, Cx40, and Cx45 are components of myocyte gap junctions, and it has also been demonstrated that Cx40 was expressed in the endothelial cells of the blood vessels. The aim of the present work was to investigate the expression and regulation of Cx40, Cx43, and Cx37 during the early stages of mouse heart maturation, between 8.5 days post coitum (dpc), when the first rhythmic contractions appear, and 14.5 dpc, when the four-chambered heart is almost completed. At 8.5 dpc, only the reverse-transcriptase polymerase chain reaction technique has allowed identification of Cx43, Cx40, and Cx37 gene transcripts in mouse heart, suggesting a very low activity level of these genes. From 9.5 dpc, all three transcripts became detectable in whole-mount in situ-hybridized embryos, and the most obvious result was the labeling of the vascular system with Cx40 and Cx37 anti-sense riboprobes. Cx40 and Cx37 gene products (transcript and/or protein) were demonstrated to be expressed in the vascular endothelial cells at all stages examined. By contrast, only Cx37 gene products were found in the endothelial cells of the endocardium. In heart, Cx37 was expressed exclusively in these cells, which rules out any direct involvement of this Cx in the propagation of electrical activity between myocytes and the synchronization of contractions. Between 9.5 and 11.5 dpc, Cx40 gene activation in myocytes was demonstrated to proceed according to a caudorostral gradient involving first the primitive atrium and the common ventricular chamber (9.5 dpc) and then the right ventricle (11.5 dpc). During this period of heart morphogenesis, there is clearly a temporary and asymmetrical regionalization of the Cx40 gene expression that is superimposed on the functional regionalization. In addition, comparison of Cx40 and Cx43 distribution at the above developmental stages has shown that these Cxs have overlapping (left ventricle) or complementary (atrial tissue and right ventricle) expression patterns.

摘要

心肌中肌细胞的同步收缩需要这些细胞之间存在的缝隙连接在结构和功能上保持完整。缝隙连接是由连接蛋白(Cx)家族的跨膜蛋白形成的细胞间通道簇。在哺乳动物心脏中已鉴定出几种Cx基因的产物(例如,Cx45、Cx43、Cx40和Cx37),并且已证明它们的表达在心肌发育过程中受到调控。Cx43、Cx40和Cx45是肌细胞缝隙连接的组成部分,并且还已证明Cx40在血管内皮细胞中表达。本研究的目的是调查在小鼠心脏成熟早期,即交配后8.5天(dpc)首次出现节律性收缩时,至14.5 dpc四腔心脏几乎完全形成时,Cx40、Cx43和Cx37的表达和调控情况。在8.5 dpc时,只有逆转录聚合酶链反应技术能够在小鼠心脏中鉴定出Cx43、Cx40和Cx37基因转录本,这表明这些基因的活性水平非常低。从9.5 dpc开始,在全胚胎原位杂交胚胎中可以检测到所有这三种转录本,最明显的结果是用Cx40和Cx37反义核糖探针标记了血管系统。已证明Cx40和Cx37基因产物(转录本和/或蛋白质)在所有检测阶段均在血管内皮细胞中表达。相比之下,仅在内皮细胞的心内膜中发现了Cx37基因产物。在心脏中,Cx37仅在这些细胞中表达,这排除了该Cx直接参与肌细胞之间电活动的传播和收缩同步的可能性。在9.5至11.5 dpc之间,已证明肌细胞中Cx40基因的激活按照尾头梯度进行,首先涉及原始心房和共同心室腔(9.5 dpc),然后是右心室(11.5 dpc)。在心脏形态发生的这一时期,Cx40基因表达明显存在暂时的不对称区域化,叠加在功能区域化之上。此外,对上述发育阶段Cx40和Cx43分布的比较表明,这些Cx具有重叠(左心室)或互补(心房组织和右心室)的表达模式。

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