糖尿病大鼠心脏连接蛋白43的变化。

Hai Lin, Koichi Ogawa, Issei Imanaga, Narcis Tribulova
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引用次数: 33

摘要

在链脲佐菌素诱导的糖尿病大鼠心脏中,观察到电导率下降和细胞间电偶联抑制。为了阐明这一机制,本研究采用免疫组织化学、免疫印迹、电镜分析对间隙连接蛋白43 (Cx43)进行了研究。PKCepsilon激活增强,PKCepsilon介导的Cx43磷酸化增强,Cx43总量减少,插入盘和内化处Cx43免疫反应颗粒数量减少,间隙连接的环状谱都在糖尿病心脏中被识别出来。用溶酶体(胰肽)或蛋白酶体抑制剂(ALLN)治疗可减轻Cx43表达的这种恶化。这些结果表明,pkcepsilon介导的Cx43的过度磷酸化使Cx43易受蛋白水解降解,而糖尿病心脏中电导率的降低也是由于Cx43蛋白水解降解加速导致间隙连接通道数量减少所致。因此,PKC激活诱导的Cx43重塑可能有助于心律失常底物的形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Alterations of connexin 43 in the diabetic rat heart.

In the streptozotocin-induced diabetic rat heart, a decrease in the conductivity and suppression of electrical cell-to-cell coupling has been observed. To clarify this mechanism, the present study was performed to investigate the gap junction connexin 43 (Cx43) using immunohistochemistry, immunoblot, electron-microscopic analyses. Enhanced activation of PKCepsilon, augmentation of PKCepsilon-mediated phosphorylation of Cx43, a decrease in the total amount of Cx43, a reduction in the number of immunoreactive particles for Cx43 at the intercalated disk and internalization, annular profiles of the gap junction were all recognized in the diabetic heart. Such a deterioration in the expression of Cx43 was alleviated by treatment with either lysosomal (leupeptin) or proteasomal inhibitor (ALLN). These results suggest that the PKCepsilon-mediated hyperphosphorylation of Cx43 makes Cx43 vulnerable to proteolytic degradation, while a decrease in the conductivity in the diabetic heart is also caused by a decrease in the number of gap junction channels due to an acceleration of the proteolytic degradation of Cx43. The remodeling of Cx43 induced by the activation of PKC may therefore contribute to the formation of the arrhythmogenic substrate.

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