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首页> 外文期刊>Acta physiologica Scandinavica >Gap junctional hemichannels in the heart.
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Gap junctional hemichannels in the heart.

机译:心脏的缝隙连接半通道。

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摘要

Upon contacting each other, cells form gap junctions, in which each cell contributes half of the channel linking their cytoplasms, enabling them to share their metabolome up to a molecular weight of 1000. Each hemichannel (or connexon) is randomly inserted into the plasma membrane and then migrates to the site of cell-to-cell contact before pairing with the neighbouring cell's hemichannel to form a communicating conduit. This review summarizes the evidence for hemichannels in heart ventricular myocytes. Morphological findings are summarized describing how hemichannels are inserted into the plasma membrane. Once in the plasma membrane, hemichannels can be functionally detected electrophysiologically or by dye uptake assays. Each technique reveals specific aspects of hemichannel function. Using dye uptake studies, it is possible to investigate the biological regulation of hemichannels in vivo. Evidence is summarized which indicates that hemichannels are normally kept closed in the presence of normal extracellular Ca because they are phosphorylated at residues in the C-terminus regulated by the MAPK signalling pathway. When hemichannels are dephosphorylated, the channels open and allow dye uptake into the cells, as well as potentially deleterious ion exchange. Biological stresses, such as hyperosmolarity and metabolic inhibition, open hemichannels by this mechanism through activating phosphatases. The resulting ion fluxes may have important roles in heart physiology and pathophysiology.
机译:彼此接触时,细胞形成间隙连接,其中每个细胞贡献连接其细胞质的通道的一半,使它们能够共享分子量高达1000的代谢组。每个半通道(或连接子)随机插入质膜然后迁移到细胞间接触的位置,然后与相邻细胞的半通道配对以形成连通管道。这篇综述总结了心脏心室肌细胞中半通道的证据。总结了形态学发现,描述了如何将半通道插入质膜。一旦进入质膜,就可以通过电生理学或通过染料摄取测定功能检测半通道。每种技术都揭示了半通道功能的特定方面。使用染料吸收研究,可以研究体内半通道的生物学调控。总结的证据表明,在正常的细胞外Ca存在下,半通道通常保持关闭状态,因为它们在MAPK信号通路调节的C端残基处被磷酸化。当半通道被去磷酸化时,通道打开并允许染料吸收到细胞中,以及可能有害的离子交换。诸如高渗和代谢抑制之类的生物应激通过激活磷酸酶的这种机制打开半通道。产生的离子通量可能在心脏生理和病理生理中起重要作用。

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