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Connexins: key mediators of endocrine function.

机译:连接蛋白:内分泌功能的关键介质。

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The appearance of multicellular organisms imposed the development of several mechanisms for cell-to-cell communication, whereby different types of cells coordinate their function. Some of these mechanisms depend on the intercellular diffusion of signal molecules in the extracellular spaces, whereas others require cell-to-cell contact. Among the latter mechanisms, those provided by the proteins of the connexin family are widespread in most tissues. Connexin signaling is achieved via direct exchanges of cytosolic molecules between adjacent cells at gap junctions, for cell-to-cell coupling, and possibly also involves the formation of membrane "hemi-channels," for the extracellular release of cytosolic signals, direct interactions between connexins and other cell proteins, and coordinated influence on the expression of multiple genes. Connexin signaling appears to be an obligatory attribute of all multicellular exocrine and endocrine glands. Specifically, the experimental evidence we review here points to a direct participation of the Cx36 isoform in the function of the insulin-producing beta-cells of the endocrine pancreas, and of the Cx40 isoform in the function of the renin-producing juxtaglomerular epithelioid cells of the kidney cortex.
机译:多细胞生物的出现要求细胞间通信的几种机制的发展,从而使不同类型的细胞协调其功能。这些机制中的某些机制取决于信号分子在细胞外空间中的细胞间扩散,而其他机制则需要细胞间的接触。在后一种机制中,连接蛋白家族的蛋白质所提供的那些机制在大多数组织中都很普遍。连接蛋白信号传导是通过间隙连接处相邻细胞之间胞质分子之间的直接交换来实现的,从而实现细胞间偶联,并且还可能涉及膜“半通道”的形成,胞质信号的胞外释放,连接蛋白和其他细胞蛋白,并协同影响多个基因的表达。连接蛋白信号传导似乎是所有多细胞外分泌腺和内分泌腺的强制属性。具体而言,我们在这里回顾的实验证据指出,Cx36同工型直接参与内分泌胰腺的胰岛素产生β细胞的功能,而Cx40同工型直接参与了肾上腺生成的肾小球上皮样细胞的功能肾皮质。

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