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质子通过M2通道传输的计算研究。

Computational studies of proton transport through the M2 channel.

作者信息

Wu Yujie, Voth Gregory A

机构信息

Department of Chemistry and Henry Eyring Center for Theoretical Chemistry, University of Utah, 315 S. 1400 E. Rm. 2020, Salt Lake City, UT 84112-0850, USA.

出版信息

FEBS Lett. 2003 Sep 18;552(1):23-7. doi: 10.1016/s0014-5793(03)00779-8.

Abstract

The M2 ion channel is an essential component of the influenza A virus. This low-pH gated channel has a high selectivity for protons. Evidence from various experimental data has indicated that the essential structure responsible for the channel is a parallel homo-tetrameric alpha-helix bundle having a left-handed twist with each helix tilted with respect to the membrane normal. A backbone structure has been determined by solid state nuclear magnetic resonance (NMR). Though detailed structures for the side chains are not available yet, evidence has indicated that His37 and Trp41 in the alpha-helix are implicated in the local molecular structure responsible for the selectivity and channel gate. More definitive conformations for the two residues were recently suggested based on the known backbone structure and recently obtained NMR data. While two competitive proton-conductance mechanisms have been proposed, the actual proton-conductance mechanism remains an unsolved problem. Computer simulations of an excess proton in the channel and computational studies of the His37/Trp41 conformations have provided insights into these structural and mechanism issues.

摘要

M2离子通道是甲型流感病毒的一个重要组成部分。这个低pH值门控通道对质子具有高度选择性。来自各种实验数据的证据表明,负责该通道的基本结构是一个平行同四聚体α-螺旋束,具有左旋扭曲,每个螺旋相对于膜法线倾斜。其主链结构已通过固态核磁共振(NMR)确定。虽然尚未获得侧链的详细结构,但有证据表明α-螺旋中的His37和Trp41与负责选择性和通道门控的局部分子结构有关。最近根据已知的主链结构和最近获得的NMR数据,提出了这两个残基更明确的构象。虽然已经提出了两种竞争性的质子传导机制,但实际的质子传导机制仍然是一个未解决的问题。通道中过量质子的计算机模拟以及His37/Trp41构象的计算研究为这些结构和机制问题提供了见解。

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