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首页> 外文期刊>Human Molecular Genetics >Cx36 makes channels coupling human pancreatic beta-cells, and correlates with insulin expression.
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Cx36 makes channels coupling human pancreatic beta-cells, and correlates with insulin expression.

机译:Cx36使通道耦合人胰岛β细胞,并与胰岛素表达相关。

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Previous studies have documented that the insulin-producing beta-cells of laboratory rodents are coupled by gap junction channels made solely of the connexin36 (Cx36) protein, and have shown that loss of this protein desynchronizes beta-cells, leading to secretory defects reminiscent of those observed in type 2 diabetes. Since human islets differ in several respects from those of laboratory rodents, we have now screened human pancreas, and islets isolated thereof, for expression of a variety of connexin genes, tested whether the cognate proteins form functional channels for islet cell exchanges, and assessed whether this expression changes with beta-cell function in islets of control and type 2 diabetics. Here, we show that (i) different connexin isoforms are differentially distributed in the exocrine and endocrine parts of the human pancreas; (ii) human islets express at the transcript level different connexin isoforms; (iii) the membrane of beta-cells harbors detectable levels of gap junctions made of Cx36; (iv) this protein is concentrated in lipid raft domains of the beta-cell membrane where it forms gap junctions; (v) Cx36 channels allow for the preferential exchange of cationic molecules between human beta-cells; (vi) the levels of Cx36 mRNA correlated with the expression of the insulin gene in the islets of both control and type 2 diabetics. The data show that Cx36 is a native protein of human pancreatic islets, which mediates the coupling of the insulin-producing beta-cells, and contributes to control beta-cell function by modulating gene expression.
机译:先前的研究已经证明,实验室啮齿动物的产生胰岛素的β细胞通过仅由connexin36(Cx36)蛋白制成的间隙连接通道耦合,并显示该蛋白的丧失使β细胞失同步,从而导致分泌缺陷,令人联想到在2型糖尿病中观察到的那些。由于人胰岛在某些方面与实验室啮齿动物不同,因此我们现在筛选了人胰脏,并分离了其胰岛,以表达多种连接蛋白基因,测试了同源蛋白是否形成了胰岛细胞交换的功能性通道,并评估了是否在对照组和2型糖尿病患者的胰岛中,该表达随β细胞功能而改变。在这里,我们显示(i)不同的连接蛋白同工型在人胰腺的外分泌和内分泌部位差异分布; (ii)人胰岛在转录水平上表达不同的连接蛋白同工型; (iii)β细胞膜具有可检测水平的Cx36间隙连接; (iv)该蛋白质集中在β细胞膜的脂筏结构域中,在该处形成间隙连接; (v)Cx36通道可在人类β细胞之间优先交换阳离子分子; (vi)在对照和2型糖尿病患者的胰岛中,Cx36 mRNA的水平与胰岛素基因的表达相关。数据表明,Cx36是人胰岛的天然蛋白,可介导产生胰岛素的β细胞的偶联,并通过调节基因表达来帮助控制β细胞的功能。

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