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Hemichannel composition and electrical synaptic transmission: molecular diversity and its implications for electrical rectification

机译:半通道组成和突触传递:分子多样性及其对电整流的影响。

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摘要

Unapposed hemichannels (HCs) formed by hexamers of gap junction proteins are now known to be involved in various cellular processes under both physiological and pathological conditions. On the other hand, less is known regarding how differences in the molecular composition of HCs impact electrical synaptic transmission between neurons when they form intercellular heterotypic gap junctions (GJs). Here we review data indicating that molecular differences between apposed HCs at electrical synapses are generally associated with rectification of electrical transmission. Furthermore, this association has been observed at both innexin and connexin (Cx) based electrical synapses. We discuss the possible molecular mechanisms underlying electrical rectification, as well as the potential contribution of intracellular soluble factors to this phenomenon. We conclude that asymmetries in molecular composition and sensitivity to cellular factors of each contributing hemichannel can profoundly influence the transmission of electrical signals, endowing electrical synapses with more complex functional properties.
机译:现在已知由间隙连接蛋白的六聚体形成的未结合的半通道(HCs)在生理和病理条件下都参与各种细胞过程。另一方面,关于HC分子组成的差异如何在神经元形成细胞间异型间隙连接(GJ)时如何影响神经元之间的电突触传递,还知之甚少。在这里,我们审查数据表明,在电突触的并置HCs之间的分子差异通常与电气传输的整流有关。此外,这种关联在基于连接蛋白和连接蛋白(Cx)的电突触中均被观察到。我们讨论了电整流的潜在分子机制,以及细胞内可溶性因子对此现象的潜在贡献。我们得出的结论是,分子组成的不对称性以及对每个促成半通道的细胞因子的敏感性会深刻影响电信号的传输,使电突触具有更复杂的功能特性。

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