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KcsA 钾通道中选择性失活偶联的机制。

Mechanism for selectivity-inactivation coupling in KcsA potassium channels.

机构信息

Department of Cell Biology and Physiology, Washington University School of Medicine, 660 South Euclid Avenue, St Louis, MO 63110, USA.

出版信息

Proc Natl Acad Sci U S A. 2011 Mar 29;108(13):5272-7. doi: 10.1073/pnas.1014186108. Epub 2011 Mar 14.

Abstract

Structures of the prokaryotic K(+) channel, KcsA, highlight the role of the selectivity filter carbonyls from the GYG signature sequence in determining a highly selective pore, but channels displaying this sequence vary widely in their cation selectivity. Furthermore, variable selectivity can be found within the same channel during a process called C-type inactivation. We investigated the mechanism for changes in selectivity associated with inactivation in a model K(+) channel, KcsA. We found that E71A, a noninactivating KcsA mutant in which a hydrogen-bond behind the selectivity filter is disrupted, also displays decreased K(+) selectivity. In E71A channels, Na(+) permeates at higher rates as seen with and flux measurements and analysis of intracellular Na(+) block. Crystal structures of E71A reveal that the selectivity filter no longer assumes the "collapsed," presumed inactivated, conformation in low K(+), but a "flipped" conformation, that is also observed in high K(+), high Na(+), and even Na(+) only conditions. The data reveal the importance of the E71-D80 interaction in both favoring inactivation and maintaining high K(+) selectivity. We propose a molecular mechanism by which inactivation and K(+) selectivity are linked, a mechanism that may also be at work in other channels containing the canonical GYG signature sequence.

摘要

原核 K(+)通道 KcsA 的结构突出了 GYG 特征序列中选择性过滤器羰基在确定高度选择性孔方面的作用,但显示该序列的通道在阳离子选择性方面差异很大。此外,在称为 C 型失活的过程中,同一通道内也可以发现可变的选择性。我们研究了与失活相关的选择性变化的机制在模型 K(+)通道 KcsA 中。我们发现,E71A 是一种非失活的 KcsA 突变体,其选择性过滤器后面的氢键被破坏,也显示出降低的 K(+)选择性。在 E71A 通道中,Na(+)的渗透率更高,如用通量测量和细胞内 Na(+)阻断分析所示。E71A 的晶体结构表明,选择性过滤器不再采用“塌陷”(假定的失活)构象,而是采用“翻转”构象,这种构象也存在于高 K(+)、高 Na(+)甚至仅 Na(+)条件下。数据揭示了 E71-D80 相互作用在促进失活和维持高 K(+)选择性方面的重要性。我们提出了一个失活和 K(+)选择性相关的分子机制,该机制也可能在其他包含典型 GYG 特征序列的通道中起作用。

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