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钠钾通道离子选择性的结构分析。

Structural analysis of ion selectivity in the NaK channel.

作者信息

Alam Amer, Jiang Youxing

机构信息

Department of Physiology, University of Texas Southwestern Medical Center, 5323 Harry Hines Blvd, Dallas, Texas 75390-9040, USA.

出版信息

Nat Struct Mol Biol. 2009 Jan;16(1):35-41. doi: 10.1038/nsmb.1537. Epub 2008 Dec 21.

Abstract

Here we present a detailed characterization of ion binding in the NaK pore using the high-resolution structures of NaK in complex with various cations. These structures reveal four ion binding sites with similar chemical environments but vastly different ion preference. The most nonselective of all is site 3, which is formed exclusively by backbone carbonyl oxygen atoms and resides deep within the selectivity filter. Additionally, four water molecules in combination with four backbone carbonyl oxygen atoms are seen to participate in K(+) and Rb(+) ion chelation, at both the external entrance and the vestibule of the NaK filter, confirming the channel's preference for an octahedral ligand configuration for K(+) and Rb(+) binding. In contrast, Na(+) binding in the NaK filter, particularly at site 4, utilizes a pyramidal ligand configuration that requires the participation of a water molecule in the cavity. Therefore, the ability of the NaK filter to bind both Na(+) and K(+) ions seemingly arises from the ions' ability to use the existing environment in unique ways, rather than from any structural rearrangements of the filter itself.

摘要

在此,我们利用与各种阳离子结合的NaK的高分辨率结构,对NaK孔中的离子结合进行了详细表征。这些结构揭示了四个离子结合位点,它们具有相似的化学环境,但离子偏好却大不相同。其中最不具选择性的是位点3,它完全由主链羰基氧原子形成,位于选择性过滤器的深处。此外,在NaK过滤器的外部入口和前庭处,四个水分子与四个主链羰基氧原子共同参与K(+)和Rb(+)离子的螯合,证实了该通道对K(+)和Rb(+)结合的八面体配体构型的偏好。相比之下,NaK过滤器中的Na(+)结合,特别是在位点4处,利用了一种金字塔形配体构型,该构型需要一个水分子参与腔内作用。因此,NaK过滤器结合Na(+)和K(+)离子的能力似乎源于离子以独特方式利用现有环境的能力,而非过滤器本身的任何结构重排。

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