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缝隙连接蛋白连接蛋白40在大鼠心肌的血管内皮和传导束中优先表达,并且在高血压条件下会增加。

Gap junction protein connexin40 is preferentially expressed in vascular endothelium and conductive bundles of rat myocardium and is increased under hypertensive conditions.

作者信息

Bastide B, Neyses L, Ganten D, Paul M, Willecke K, Traub O

机构信息

Institut für Genetik, Universität Bonn, Germany.

出版信息

Circ Res. 1993 Dec;73(6):1138-49. doi: 10.1161/01.res.73.6.1138.

DOI:10.1161/01.res.73.6.1138
PMID:8222085
Abstract

Gap junction channels consisting of connexin protein mediate electrical coupling between cardiac cells. Expression of two connexins, connexin40 (Cx40) and connexin43 (Cx43), has been studied in ventricular myocytes from normal and hypertensive rats. Polyclonal affinity-purified rabbit antibodies to Cx43 and Cx40 have been used for immunohistochemical analysis on frozen sections from rat heart. These studies revealed coexpression of Cx43 and Cx40 in ventricular myocytes. In addition, Cx40 is preferentially expressed in three distinct regions: first, in the endothelial layer of the heart blood vessels but not in the smooth muscle layer of the arteries; second, in the ventricular conductive myocardium, particularly in the atrioventricular bundle and bundle branches, where Cx43 is not observed; and third, in the myocyte layers close to the ventricular cavities. These results suggest that Cx40 is preferentially expressed in the fast conducting areas of myocardial tissue. Expression of both Cx40 and Cx43 was also found in immunoblots from normal and hypertensive rat myocardiocytes. Under hypertensive conditions (ie, in spontaneous hypertensive rats and in transgenic rats that exhibit hypertension due to expression of an exogenous renin gene), we found a 3.1-fold increase in Cx40 expression, compared with normal myocardium. Furthermore, we detected a 3.3-fold decrease in Cx43 protein level in transgenic hypertensive rats. The coexpression of Cx40 and Cx43 proteins in rat myocytes, their spatial distribution, and the increased amount of Cx40 protein during cardiac hypertrophy suggest that Cx40 may be involved in mediating fast conduction under normal and pathological conditions. The increased expression of Cx40 in hypertrophic heart may be a compensatory mechanism to increase conduction velocity.

摘要

由连接蛋白构成的缝隙连接通道介导心脏细胞之间的电偶联。在正常大鼠和高血压大鼠的心室肌细胞中,对两种连接蛋白——连接蛋白40(Cx40)和连接蛋白43(Cx43)的表达情况进行了研究。用多克隆亲和纯化的兔抗Cx43和Cx40抗体,对大鼠心脏冷冻切片进行免疫组织化学分析。这些研究揭示了Cx43和Cx40在心室肌细胞中的共表达。此外,Cx40优先表达于三个不同区域:第一,在心脏血管的内皮细胞层,而非动脉的平滑肌层;第二,在心室传导心肌,特别是在房室束和束支中,未观察到Cx43;第三,在靠近心室腔的心肌细胞层。这些结果表明,Cx40优先表达于心肌组织的快速传导区域。在正常大鼠和高血压大鼠心肌细胞的免疫印迹中也发现了Cx40和Cx43的表达。在高血压状态下(即自发性高血压大鼠和因外源性肾素基因表达而出现高血压的转基因大鼠),我们发现与正常心肌相比,Cx40的表达增加了3.1倍。此外,我们检测到转基因高血压大鼠中Cx43蛋白水平下降了3.3倍。大鼠心肌细胞中Cx40和Cx43蛋白的共表达、它们的空间分布以及心脏肥大过程中Cx40蛋白量的增加表明,Cx40可能在正常和病理条件下参与介导快速传导。肥大心脏中Cx40表达的增加可能是增加传导速度的一种代偿机制。

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Gap junction protein connexin40 is preferentially expressed in vascular endothelium and conductive bundles of rat myocardium and is increased under hypertensive conditions.缝隙连接蛋白连接蛋白40在大鼠心肌的血管内皮和传导束中优先表达,并且在高血压条件下会增加。
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