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解析控制KcsA离子通道中钾离子渗透的强关联残基动态网络。

Unraveling of a Strongly Correlated Dynamical Network of Residues Controlling the Permeation of Potassium in KcsA Ion Channel.

作者信息

Cosseddu Salvatore M, Choe Eunju Julia, Khovanov Igor A

机构信息

School of Engineering, University of Warwick, Coventry CV4 7AL, UK.

出版信息

Entropy (Basel). 2021 Jan 6;23(1):72. doi: 10.3390/e23010072.

Abstract

The complicated patterns of the single-channel currents in potassium ion channel KcsA are governed by the structural variability of the selectivity filter. A comparative analysis of the dynamics of the wild type KcsA channel and several of its mutants showing different conducting patterns was performed. A strongly correlated dynamical network of interacting residues is found to play a key role in regulating the state of the wild type channel. The network is centered on the aspartate D80 which plays the role of a hub by strong interacting via hydrogen bonds with residues E71, R64, R89, and W67. Residue D80 also affects the selectivity filter via its backbones. This network further compromises ions and water molecules located inside the channel that results in the mutual influence: the permeation depends on the configuration of residues in the network, and the dynamics of network's residues depends on locations of ions and water molecules inside the selectivity filter. Some features of the network provide a further understanding of experimental results describing the KcsA activity. In particular, the necessity of anionic lipids to be present for functioning the channel is explained by the interaction between the lipids and the arginine residues R64 and R89 that prevents destabilizing the structure of the selectivity filter.

摘要

钾离子通道KcsA中复杂的单通道电流模式受选择性过滤器结构变异性的支配。对野生型KcsA通道及其几个呈现不同导电模式的突变体的动力学进行了比较分析。发现一个相互作用残基的强相关动态网络在调节野生型通道状态中起关键作用。该网络以天冬氨酸D80为中心,它通过与残基E71、R64、R89和W67形成氢键进行强相互作用,从而起到枢纽的作用。残基D80还通过其主链影响选择性过滤器。这个网络进一步影响通道内的离子和水分子,从而导致相互影响:渗透取决于网络中残基的构型,而网络残基的动力学取决于选择性过滤器内离子和水分子的位置。该网络的一些特征有助于进一步理解描述KcsA活性的实验结果。特别是,通道功能所需阴离子脂质的存在可通过脂质与精氨酸残基R64和R89之间的相互作用来解释,这种相互作用可防止选择性过滤器结构不稳定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a225/7825352/0e8a460b45cf/entropy-23-00072-g001.jpg

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