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首页> 外文期刊>Biophysical Journal >Ion conduction in ligand-gated ion channels: Brownian dynamics studies of four recent crystal structures.
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Ion conduction in ligand-gated ion channels: Brownian dynamics studies of four recent crystal structures.

机译:配体门控离子通道中的离子传导:四个最新晶体结构的布朗动力学研究。

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摘要

Four x-ray crystal structures of prokaryotic homologs of ligand-gated ion channels have recently been determined: ELIC from Erwinia chrysanthemi, two structures of a proton-activated channel from Gloebacter violaceus (GLIC1 and GLIC2) and that of the E221A mutant (GLIC1M). The availability of numerous structures of channels in this family allows for aspects of channel gating and ion conduction to be examined. Here, we determine the likely conduction states of the four structures as well as IV curves, ion selectivity, and steps involved in ion permeation by performing extensive Brownian dynamics simulations. Our results show that the ELIC structure is indeed nonconductive, but that GLIC1 and GLIC1M are both conductive of ions with properties different from those seen in experimental studies of the channel. GLIC2 appears to reflect an open state of the channel with a predicted conductance of 10.8-12.4 pS in 140 mM NaCl solution, which is comparable to the experimental value 8 +/- 2 pS. The extracellular domain of the channel is shown to have an important influence on the channel current, but a less significant role in ion selectivity.
机译:最近已经确定了配体门控离子通道的原核同源物的四种X射线晶体结构:欧文氏菊(Erwinia chrysanthemi)的ELIC,紫堇杆菌(GLIC1和GLIC2)的质子激活通道的两种结构以及E221A突变体(GLIC1M) 。该家族中众多通道结构的可用性允许检查通道选通和离子传导方面。在这里,我们通过进行广泛的布朗动力学模拟,确定了四种结构的可能的导电状态以及IV曲线,离子选择性和离子渗透所涉及的步骤。我们的结果表明,ELIC结构确实是不导电的,但是GLIC1和GLIC1M都可以导电,其离子性质与通道的实验研究不同。 GLIC2似乎反映了通道的开放状态,在140 mM NaCl溶液中的预测电导为10.8-12.4 pS,与实验值8 +/- 2 pS相当。已显示通道的胞外域对通道电流有重要影响,但对离子选择性的作用较小。

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