反转运蛋白
分子动力学
限制
化学
功能(生物学)
钠
反转运蛋白
钠氢反转运蛋白
离子
生物物理学
物理
计算化学
生物
工程类
有机化学
机械工程
进化生物学
作者
Tengyu Xie,Jiahao He,Shuo Sun,Yu‐Lei Chen,Jing Huang,Yandong Huang
标识
DOI:10.1021/acs.jctc.5c00632
摘要
Sodium-proton antiporter NhaA of Escherichia coli is a paradigm to investigate the mechanistic basis of the fundamental Na+/H+ exchange in cells. However, all existing crystal structures of NhaA are inward-facing (IF), and the putative outward-facing (OF) structures are still unsolved by experiment, limiting a complete understanding of the transport cycle in which Lys300 plays a key role in both structural stability and transport function. Here, we report a set of atomistic molecular dynamics (MD) simulations that start from the structure predicted by an artificial intelligence model that generates function-relevant alternative conformations. It is found that NhaA rapidly relaxes into either the IF or the OF conformation. Furthermore, the neutralization of Lys300 allows the binding of two sodium ions, a configuration that is associated with enhanced conformational sampling. Based on these observations, we propose a sodium-coupled mechanism of Na+/H+ antiporting.
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