Ion transfer mechanisms in Mrp-type antiporters from high resolution cryoEM and molecular dynamics simulations

从高分辨率低温电子显微镜和分子动力学模拟中了解 Mrp 型反向转运体中的离子转移机制

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作者:Yongchan Lee #, Outi Haapanen #, Anton Altmeyer, Werner Kühlbrandt, Vivek Sharma, Volker Zickermann

Abstract

Multiple resistance and pH adaptation (Mrp) cation/proton antiporters are essential for growth of a variety of halophilic and alkaliphilic bacteria under stress conditions. Mrp-type antiporters are closely related to the membrane domain of respiratory complex I. We determined the structure of the Mrp antiporter from Bacillus pseudofirmus by electron cryo-microscopy at 2.2 Å resolution. The structure resolves more than 99% of the sidechains of the seven membrane subunits MrpA to MrpG plus 360 water molecules, including ~70 in putative ion translocation pathways. Molecular dynamics simulations based on the high-resolution structure revealed details of the antiport mechanism. We find that switching the position of a histidine residue between three hydrated pathways in the MrpA subunit is critical for proton transfer that drives gated trans-membrane sodium translocation. Several lines of evidence indicate that the same histidine-switch mechanism operates in respiratory complex I.

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