首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Glial connexins and gap junctions in CNS inflammation and disease.
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Glial connexins and gap junctions in CNS inflammation and disease.

机译:神经胶质连接蛋白和间隙连接在中枢神经系统炎症和疾病。

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摘要

Gap junctions facilitate direct cytoplasmic communication between neighboring cells, facilitating the transfer of small molecular weight molecules involved in cell signaling and metabolism. Gap junction channels are formed by the joining of two hemichannels from adjacent cells, each composed of six oligomeric protein subunits called connexins. Of paramount importance to CNS homeostasis are astrocyte networks formed by gap junctions, which play a critical role in maintaining the homeostatic regulation of extracellular pH, K+, and glutamate levels. Inflammation is a hallmark of several diseases afflicting the CNS. Within the past several years, the number of publications reporting effects of cytokines and pathogenic stimuli on glial gap junction communication has increased dramatically. The purpose of this review is to discuss recent observations characterizing the consequences of inflammatory stimuli on homocellular gap junction coupling in astrocytes and microglia as well as changes in connexin expression during various CNS inflammatory conditions.
机译:间隙连接促进邻近细胞之间的直接细胞质通讯,促进与细胞信号传导和代谢有关的小分子量分子的转移。间隙连接通道是通过连接来自相邻细胞的两个半通道形成的,每个半通道由六个称为连接蛋白的寡聚蛋白亚基组成。对于CNS稳态而言,最重要的是由间隙连接形成的星形胶质细胞网络,它们在维持细胞外pH,K +和谷氨酸水平的稳态调节中起关键作用。炎症是困扰中枢神经系统的几种疾病的标志。在过去的几年中,报告细胞因子和致病性刺激对神经胶质间隙连接通讯的影响的出版物数量急剧增加。这篇综述的目的是讨论表征炎症刺激对星形胶质细胞和小胶质细胞中同细胞间隙连接偶联的后果以及各种中枢神经系统炎症条件下连接蛋白表达的变化的最新观察。

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