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ENaC structure and function in the wake of a resolved structure of a family member.

机译:enac结构和功能在家庭成员的解决结构之后。

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摘要

Our understanding of epithelial Na(+) channel (ENaC) structure and function has been profoundly impacted by the resolved structure of the homologous acid-sensing ion channel 1 (ASIC1). The structure of the extracellular and pore regions provide insight into channel assembly, processing, and the ability of these channels to sense the external environment. The absence of intracellular structures precludes insight into important interactions with intracellular factors that regulate trafficking and function. The primary sequences of ASIC1 and ENaC subunits are well conserved within the regions that are within or in close proximity to the plasma membrane, but poorly conserved in peripheral domains that may functionally differentiate family members. This review examines functional data, including ion selectivity, gating, and amiloride block, in light of the resolved ASIC1 structure.
机译:我们对上皮NA(+)通道(ENAC)结构和功能的理解受到同源酸感测离子通道1(ASIC1)的分辨结构的深刻影响。 细胞外和孔区域的结构提供了通道组装,处理和这些通道感知外部环境的能力的洞察力。 没有细胞内结构阻止了与调节贩运和功能的细胞内因素的重要相互作用。 ASIC1和ENAC亚基的主要序列很好地保存在对血浆膜内或紧邻或紧邻血浆膜的区域内,但在可以在功能上鉴别家庭成员的外周域中保守差。 本次审查考虑了功能数据,包括离子选择性,门控和余流块,鉴于已解析的ASIC1结构。

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