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解析兰尼碱受体:模拟钙释放通道的离子渗透与选择性

(De)constructing the ryanodine receptor: modeling ion permeation and selectivity of the calcium release channel.

作者信息

Gillespie Dirk, Xu Le, Wang Ying, Meissner Gerhard

机构信息

Department of Molecular Biophysics and Physiology, Rush University Medical Center, Chicago, Illinois 60612, USA.

出版信息

J Phys Chem B. 2005 Aug 18;109(32):15598-610. doi: 10.1021/jp052471j.

Abstract

Biological ion channels are proteins that passively conduct ions across membranes that are otherwise impermeable to ions. Here, we present a model of ion permeation and selectivity through a single, open ryanodine receptor (RyR) ion channel. Combining recent mutation data with electrodiffusion of finite-sized ions, the model reproduces the current/voltage curves of cardiac RyR (RyR2) in KCl, LiCl, NaCl, RbCl, CsCl, CaCl(2), MgCl(2), and their mixtures over large concentrations and applied voltage ranges. It also reproduces the reduced K(+) conductances and Ca(2+) selectivity of two skeletal muscle RyR (RyR1) mutants (D4899N and E4900Q). The model suggests that the selectivity filter of RyR contains the negatively charged residue D4899 that dominates the permeation and selectivity properties and gives RyR a DDDD locus similar to the EEEE locus of the L-type calcium channel. In contrast to previously applied barrier models, the current model describes RyR as a multi-ion channel with approximately three monovalent cations in the selectivity filter at all times. Reasons for the contradicting occupancy predictions are discussed. In addition, the model predicted an anomalous mole fraction effect for Na(+)/Cs(+) mixtures, which was later verified by experiment. Combining these results, the binding selectivity of RyR appears to be driven by the same charge/space competition mechanism of other highly charged channels.

摘要

生物离子通道是一种蛋白质,可使离子被动穿过原本对离子不可渗透的膜。在此,我们提出了一个通过单个开放的兰尼碱受体(RyR)离子通道进行离子渗透和选择性的模型。将最近的突变数据与有限尺寸离子的电扩散相结合,该模型再现了心脏RyR(RyR2)在KCl、LiCl、NaCl、RbCl、CsCl、CaCl₂、MgCl₂及其混合物中在大浓度和外加电压范围内的电流/电压曲线。它还再现了两个骨骼肌RyR(RyR1)突变体(D4899N和E4900Q)降低的K⁺电导率和Ca²⁺选择性。该模型表明,RyR的选择性过滤器包含带负电荷的残基D4899,它主导渗透和选择性特性,并赋予RyR一个类似于L型钙通道EEEE位点的DDDD位点。与先前应用的势垒模型不同,当前模型将RyR描述为一个多离子通道,在选择性过滤器中始终大约有三个单价阳离子。讨论了相互矛盾的占据预测的原因。此外,该模型预测了Na⁺/Cs⁺混合物的异常摩尔分数效应,这一效应后来通过实验得到验证。综合这些结果,RyR的结合选择性似乎是由其他高电荷通道相同的电荷/空间竞争机制驱动的。

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