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钾通道中钾离子的有效孔径和捕获半径

Effective pore size and radius of capture for K(+) ions in K-channels.

作者信息

Moldenhauer Hans, Díaz-Franulic Ignacio, González-Nilo Fernando, Naranjo David

机构信息

Centro Interdisciplinario de Neurociencia de Valparaíso, Universidad de Valparaíso, Playa Ancha Valparaíso, Chile.

Universidad Andrés Bello, Center for Bioinformatics and Integrative Biology, Santiago, Chile and Fundación Fraunhofer-Chile, Las Condes, Chile.

出版信息

Sci Rep. 2016 Feb 2;6:19893. doi: 10.1038/srep19893.

Abstract

Reconciling protein functional data with crystal structure is arduous because rare conformations or crystallization artifacts occur. Here we present a tool to validate the dimensions of open pore structures of potassium-selective ion channels. We used freely available algorithms to calculate the molecular contour of the pore to determine the effective internal pore radius (r(E)) in several K-channel crystal structures. r(E) was operationally defined as the radius of the biggest sphere able to enter the pore from the cytosolic side. We obtained consistent r(E) estimates for MthK and Kv1.2/2.1 structures, with r(E) = 5.3-5.9 Å and r(E) = 4.5-5.2 Å, respectively. We compared these structural estimates with functional assessments of the internal mouth radii of capture (r(C)) for two electrophysiological counterparts, the large conductance calcium activated K-channel (r(C) = 2.2 Å) and the Shaker Kv-channel (r(C) = 0.8 Å), for MthK and Kv1.2/2.1 structures, respectively. Calculating the difference between r(E) and r(C), produced consistent size radii of 3.1-3.7 Å and 3.6-4.4 Å for hydrated K(+) ions. These hydrated K(+) estimates harmonize with others obtained with diverse experimental and theoretical methods. Thus, these findings validate MthK and the Kv1.2/2.1 structures as templates for open BK and Kv-channels, respectively.

摘要

使蛋白质功能数据与晶体结构相匹配是一项艰巨的任务,因为会出现罕见的构象或结晶假象。在此,我们展示了一种用于验证钾选择性离子通道开放孔结构尺寸的工具。我们使用了免费可得的算法来计算孔的分子轮廓,以确定几种钾通道晶体结构中的有效内部孔半径(r(E))。r(E) 在操作上被定义为能够从胞质侧进入孔的最大球体的半径。我们对MthK和Kv1.2/2.1结构获得了一致的r(E) 估计值,分别为r(E) = 5.3 - 5.9 Å和r(E) = 4.5 - 5.2 Å。我们将这些结构估计值与两种电生理对应物(分别为大电导钙激活钾通道(r(C) = 2.2 Å)和Shaker钾通道(r(C) = 0.8 Å))的捕获内部口半径(r(C))的功能评估进行了比较,分别针对MthK和Kv1.2/2.1结构。计算r(E) 和r(C) 之间的差异,得出水合钾离子的一致尺寸半径为3.1 - 3.7 Å和3.6 - 4.4 Å。这些水合钾离子的估计值与通过其他各种实验和理论方法获得的结果一致。因此,这些发现分别验证了MthK和Kv1.2/2.1结构作为开放大电导钾通道和钾通道的模板。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75fc/4735802/c98300c59adc/srep19893-f1.jpg

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