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首页> 外文期刊>Acta physiologica Scandinavica >Gap junction hemichannels in astrocytes of the CNS.
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Gap junction hemichannels in astrocytes of the CNS.

机译:中枢神经系统星形胶质细胞中的间隙连接半通道。

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摘要

Connexins are protein subunits that oligomerize into hexamers called connexons, gap junction hemichannels or just hemichannels. Because some gap junction channels are permeable to negatively and/or positively charged molecules up to approximately 1kDa in size, it was thought that hemichannels should not open to the extracellular space. A growing amount of evidence indicates that opening of hemichannels does occur under both physiological and pathological conditions in astrocytes and other cell types. Electrophysiological studies indicate that hemichannels have a low open probability under physiological conditions but may have a much higher open probability under certain pathological conditions. Some of the physiological behaviours of astrocytes that have been attributed to gap junctions may, in fact, be mediated by hemichannels. Hemichannels constituted of Cx43, the main connexin expressed by astrocytes, are permeable to small physiologically significant molecules, such as ATP, NAD+ and glutamate, and may mediate paracrine as well as autocrine signalling. Hemichannels tend to be closed by negative membrane potentials, high concentrations of extracellular Ca2+ and intracellular H+ ions, gap junction blockers and protein phosphorylation. Hemichannels tend to be opened by positive membrane potentials and low extracellular Ca2+, and possibly by as yet unidentified cytoplasmic signalling molecules. Exacerbated hemichannel opening occurs in metabolically inhibited cells, including cortical astrocytes, which contributes to the loss of chemical gradients across the plasma membrane and speeds cell death.
机译:连接蛋白是蛋白质亚基,可寡聚为六聚体,称为连接子,间隙连接半通道或半通道。由于某些间隙连接通道可渗透最大大小约为1kDa的带负电荷和/或带正电荷的分子,因此认为半通道不应向细胞外空间开放。越来越多的证据表明,星形胶质细胞和其他细胞类型在生理和病理条件下都确实会发生半通道开放。电生理研究表明,半通道在生理条件下的开放概率较低,但在某些病理条件下的开放概率可能更高。实际上,由缝隙连接引起的星形胶质细胞的某些生理行为实际上可能是由半通道介导的。由星形胶质细胞表达的主要连接蛋白Cx43构成的半通道可渗透具有生理意义的小分子,例如ATP,NAD +和谷氨酸,并可介导旁分泌以及自分泌信号传导。半通道倾向于被负膜电位,高浓度的细胞外Ca2 +和细胞内H +离子,间隙连接阻滞剂和蛋白质磷酸化所封闭。半通道倾向于通过正膜电位和低细胞外Ca2 +以及可能尚未被识别的胞质信号分子打开。在代谢抑制的细胞(包括皮质星形胶质细胞)中会出现加剧的半通道开放,这有助于整个质膜上化学梯度的丧失,并加速细胞死亡。

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