传导型和非传导型Kv1.2钾通道的冷冻电镜结构

CryoEM structures of Kv1.2 potassium channels, conducting and non-conducting.

作者信息

Wu Yangyu, Yan Yangyang, Yang Youshan, Bian Shumin, Rivetta Alberto, Allen Ken, Sigworth Fred J

机构信息

Department of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, United States.

出版信息

Elife. 2025 Feb 13;12:RP89459. doi: 10.7554/eLife.89459.

Abstract

We present near-atomic-resolution cryoEM structures of the mammalian voltage-gated potassium channel Kv1.2 in open, C-type inactivated, toxin-blocked and sodium-bound states at 3.2 Å, 2.5 Å, 3.2 Å, and 2.9 Å. These structures, all obtained at nominally zero membrane potential in detergent micelles, reveal distinct ion-occupancy patterns in the selectivity filter. The first two structures are very similar to those reported in the related Shaker channel and the much-studied Kv1.2-2.1 chimeric channel. On the other hand, two new structures show unexpected patterns of ion occupancy. First, the toxin α-Dendrotoxin, like Charybdotoxin, is seen to attach to the negatively-charged channel outer mouth, and a lysine residue penetrates into the selectivity filter, with the terminal amine coordinated by carbonyls, partially disrupting the outermost ion-binding site. In the remainder of the filter two densities of bound ions are observed, rather than three as observed with other toxin-blocked Kv channels. Second, a structure of Kv1.2 in Na solution does not show collapse or destabilization of the selectivity filter, but instead shows an intact selectivity filter with ion density in each binding site. We also attempted to image the C-type inactivated Kv1.2 W366F channel in Na solution, but the protein conformation was seen to be highly variable and only a low-resolution structure could be obtained. These findings present new insights into the stability of the selectivity filter and the mechanism of toxin block of this intensively studied, voltage-gated potassium channel.

摘要

我们展示了哺乳动物电压门控钾通道Kv1.2处于开放、C型失活、毒素阻断和钠结合状态下的近原子分辨率冷冻电镜结构,分辨率分别为3.2 Å、2.5 Å、3.2 Å和2.9 Å。所有这些结构均在去污剂胶束中名义膜电位为零的条件下获得,揭示了选择性过滤器中不同的离子占据模式。前两个结构与相关的Shaker通道以及经过大量研究的Kv1.2 - 2.1嵌合通道中报道的结构非常相似。另一方面,两个新结构显示出意外的离子占据模式。首先,毒素α - 树眼镜蛇毒素与蝎毒素一样,附着在带负电荷的通道外口,一个赖氨酸残基穿透进入选择性过滤器,末端胺与羰基配位,部分破坏了最外层的离子结合位点。在过滤器的其余部分观察到两个结合离子的密度,而不是像其他毒素阻断的Kv通道那样观察到三个。其次,Kv1.2在钠溶液中的结构并未显示选择性过滤器的塌陷或不稳定,而是显示出一个完整的选择性过滤器,每个结合位点都有离子密度。我们还试图对钠溶液中的C型失活Kv1.2 W366F通道进行成像,但发现蛋白质构象高度可变,只能获得低分辨率结构。这些发现为这个经过深入研究的电压门控钾通道的选择性过滤器稳定性和毒素阻断机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54d1/11825129/0c2cc0aceecf/elife-89459-fig1.jpg

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