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一种精细调节电压门控钾通道开放状态稳定性的新机制。

A novel mechanism for fine-tuning open-state stability in a voltage-gated potassium channel.

机构信息

Department of Anesthesiology, Pharmacology and Therapeutics, University of British Columbia, 2350 Health Science Mall, Vancouver, British Columbia, Canada V6T 1Z3.

出版信息

Nat Commun. 2013;4:1784. doi: 10.1038/ncomms2761.

Abstract

Voltage-gated potassium channels elicit membrane hyperpolarization through voltage-sensor domains that regulate the conductive status of the pore domain. To better understand the inherent basis for the open-closed equilibrium in these channels, we undertook an atomistic scan using synthetic fluorinated derivatives of aromatic residues previously implicated in the gating of Shaker potassium channels. Here we show that stepwise dispersion of the negative electrostatic surface potential of only one site, Phe481, stabilizes the channel open state. Furthermore, these data suggest that this apparent stabilization is the consequence of the amelioration of an inherently repulsive open-state interaction between the partial negative charge on the face of Phe481 and a highly co-evolved acidic side chain, Glu395, and this interaction is potentially modulated through the Tyr485 hydroxyl. We propose that the intrinsic open-state destabilization via aromatic repulsion represents a new mechanism by which ion channels, and likely other proteins, fine-tune conformational equilibria.

摘要

电压门控钾通道通过调节孔道状态的电压传感器结构域引起膜超极化。为了更好地理解这些通道的开-闭平衡的固有基础,我们使用先前涉及 Shaker 钾通道门控的芳香残基的合成氟化衍生物进行了原子扫描。在这里,我们表明,仅一个位点 Phe481 的负静电表面电势的逐步分散稳定了通道的开放状态。此外,这些数据表明,这种明显的稳定是由于改善了 Phe481 面上部分负电荷与高度共进化的酸性侧链 Glu395 之间固有的排斥性开放状态相互作用的结果,并且这种相互作用可能通过 Tyr485 羟基进行调节。我们提出,通过芳香族排斥作用引起的固有开放状态失稳代表了离子通道(可能还有其他蛋白质)微调构象平衡的新机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc4c/3644096/579e9951d11d/ncomms2761-f1.jpg

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