[细胞通讯和细胞内胰岛素的调节]。

P Meda
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引用次数: 0

摘要

多细胞生物体的出现牵涉到多种通讯机制的发展,这些机制使细胞能够协调运作。在脊椎动物的所有组织中都能找到的机制之一就是由连接蛋白家族的蛋白质来保证的。这些整体膜蛋白形成通道,允许胞浆分子在相邻细胞之间或这些细胞的胞体与细胞外环境之间通过。我们已经确定,连接蛋白 36(Cx36)是唯一能将胰岛中产生胰岛素的β细胞功能性连接("耦合")起来的连接蛋白。体外和体内实验表明,Cx36 和/或细胞间通信在控制胰岛素分泌以及β细胞抵御各种侵袭(包括与糖尿病有关的细胞因子诱导的侵袭)方面发挥作用。Cx36 基因的一种多态性与某些形式的人类糖尿病有关,因此针对这种蛋白质的疗法可能有助于治疗糖尿病。
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[Cellular communication and regulation of insulin in the cell].

The appearance of multicellular organisms implicated the development of several mechanisms of communication, which permit the cells to function in coordination. One of the mechanisms found in all tissues of vertebrates is ensured by the proteins of the connexin family. These integral membrane proteins form channels, which allow for the passage ofcytosolic molecules either between adjacent cells or between the cytosol of these cells and the extracellular environment. We have identified connexin 36 (Cx36) as the sole connexin that functionally links ("couples") the beta-cells which produce insulin within pancreatic islets. In vitro and in vivo experiments have shown that Cx36 and/or the intercellular communications to allow play a role in the control of insulin secretion as well as in the resistance of beta-cells against various aggressions, including those induced by the cytokines that are implicated in diabetes. A polymorphism of Cx36 gene is associated to certain forms of human diabetes, opening the possibility that a therapy targeting this protein may be useful in the treatment of diabetic diseases.

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