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甘氨酸受体M2跨膜片段的理论研究:开放孔结构模型和电流-电压特性

Theoretical studies of the M2 transmembrane segment of the glycine receptor: models of the open pore structure and current-voltage characteristics.

作者信息

Cheng Mary Hongying, Cascio Michael, Coalson Rob D

机构信息

Department of Chemistry,University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.

出版信息

Biophys J. 2005 Sep;89(3):1669-80. doi: 10.1529/biophysj.105.060368. Epub 2005 Jun 10.

Abstract

The pentameric glycine receptor (GlyR), a member of the nicotinicoid superfamily of ligand-gated ion channels, is an inhibitory Cl(-) channel that is gated by glycine. Using recently published NMR data of the second transmembrane segment (M2) of the human alpha1 GlyR, structural models of pentameric assemblies embedded in a lipid bilayer were constructed using a combination of experimentally determined constraints coupled with all-atom energy minimization. Based on this structure of the pentameric M2 "pore", Brownian dynamics simulations of ion permeation through this putative conducting open state of the channel were carried out. Simulated I-V curves were in good agreement with published experimental current-voltage curves and the anion/cation permeability ratio, suggesting that our open-state model may be representative of the conducting channel of the full-length receptor. These studies also predicted regions of chloride occupancy and suggested residues critical to anion permeation. Calculations of the conductance of the cation-selective mutant A251E channel are also consistent with experimental data. In addition, both rotation and untilting of the pore helices of our model were found to be broadly consistent with closing of the channel, albeit at distinct regions that may reflect alternate gates of the receptor.

摘要

五聚体甘氨酸受体(GlyR)是配体门控离子通道烟碱样超家族的成员,是一种由甘氨酸门控的抑制性Cl(-)通道。利用最近发表的人类α1 GlyR第二个跨膜片段(M2)的核磁共振数据,结合实验确定的约束条件和全原子能量最小化方法,构建了嵌入脂质双层的五聚体组装体的结构模型。基于五聚体M2“孔”的这种结构,对离子通过该通道假定的导通开放状态的渗透进行了布朗动力学模拟。模拟的I-V曲线与已发表的实验电流-电压曲线以及阴离子/阳离子渗透率比值吻合良好,表明我们的开放状态模型可能代表全长受体的导通通道。这些研究还预测了氯离子占据区域,并提出了对阴离子渗透至关重要的残基。阳离子选择性突变体A251E通道的电导计算也与实验数据一致。此外,我们模型的孔螺旋的旋转和倾斜都与通道关闭大致一致,尽管在可能反映受体交替门控的不同区域。

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