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Connexin-based intercellular communication and astrocyte heterogeneity

机译:基于连接蛋白的细胞间通讯和星形胶质细胞异质性

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摘要

This review gives an overview of the current knowledge on connexin-mediated communication in astrocytes, covering gap junction and hemichannel functions mediated by connexins. Astroglia is the main brain cell type that expresses the largest amount of connexin and exhibits high level of gap junctional communication compared to neurons and oligodendrocytes. However, in certain developmental and regional situations, astrocytes are also coupled with oligodendrocytes and neurons. This heterotypic coupling is infrequent and minor in terms of extent of the coupling area, which does not mean that it is not important in terms of cell interaction. Here, we present an update on heterogeneity of connexin expression and function at the molecular, subcellular, cellular and networking levels. Interestingly, while astrocytes were initially considered as a homogenous population, there is now increasing evidence for morphological, developmental, molecular and physiological heterogeneity of astrocytes. Consequently, the specificity of gap junction channel- and hemichannel-mediated communication, which tends to synchronize cell populations, is also a parameter to take into account when neuroglial interactions are investigated. This article is part of a Special Issue entitled Electrical Synapses.
机译:这篇综述概述了星形胶质细胞中连接蛋白介导的沟通的当前知识,涵盖了连接蛋白介导的间隙连接和半通道功能。与神经元和少突胶质细胞相比,Astroglia是主要的脑细胞类型,其表达的连接蛋白数量最多,并且间隙连接通讯水平较高。然而,在某些发育和区域情况下,星形胶质细胞也与少突胶质细胞和神经元结合。就连接区域的范围而言,这种异型偶联是不常见的并且是次要的,这并不意味着就细胞相互作用而言它并不重要。在这里,我们提出了连接蛋白表达和功能在分子,亚细胞,细胞和网络水平的异质性更新。有趣的是,虽然最初将星形胶质细胞视为同质种群,但现在越来越多的证据表明星形胶质细胞在形态,发育,分子和生理上均具有异质性。因此,当研究神经胶质相互作用时,趋于使细胞群体同步的间隙连接通道和半通道介导的通讯的特异性也是一个参数。本文是标题为“电气突触”的特刊的一部分。

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