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NMDA Receptor Opening and Closing—Transitions of a Molecular Machine Revealed by Molecular Dynamics

机译:NMDA受体的打开和关闭—分子动力学揭示的分子机器的转变

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摘要

We report the first complete description of the molecular mechanisms behind the transition of the -methyl- -aspartate (NMDA) receptor from the state where the transmembrane domain (TMD) and the ion channel are in the open configuration to the relaxed unliganded state where the channel is closed. Using an aggregate of nearly 1 µs of unbiased all-atom implicit membrane and solvent molecular dynamics (MD) simulations we identified distinct structural states of the NMDA receptor and revealed functionally important residues (GluN1/Glu522, GluN1/Arg695, and GluN2B/Asp786). The role of the “clamshell” motion of the ligand binding domain (LBD) lobes in the structural transition is supplemented by the observed structural similarity at the level of protein domains during the structural transition, combined with the overall large rearrangement necessary for the opening and closing of the receptor. The activated and open states of the receptor are structurally similar to the liganded crystal structure, while in the unliganded receptor the extracellular domains perform rearrangements leading to a clockwise rotation of up to 45 degrees around the longitudinal axis of the receptor, which closes the ion channel. The ligand-induced rotation of extracellular domains transferred by LBD–TMD linkers to the membrane-anchored ion channel is responsible for the opening and closing of the transmembrane ion channel, revealing the properties of NMDA receptor as a finely tuned molecular machine.
机译:我们报告了分子机制的第一个完整的描述,该分子机制是由-甲基--天冬氨酸(NMDA)受体从跨膜结构域(TMD)和离子通道处于开放构型变为松弛的非配体状态的过渡所致通道已关闭。使用近1 µs的无偏压全原子隐式膜和溶剂分子动力学(MD)模拟,我们发现了NMDA受体的不同结构状态,并揭示了功能上重要的残基(GluN1 / Glu522,GluN1 / Arg695和GluN2B / Asp786) 。配体结合结构域(LBD)瓣的“翻盖”运动在结构转变中的作用通过在结构转变过程中在蛋白结构域水平上观察到的结构相似性以及打开和关闭所必需的总体较大重排来补充受体的关闭。受体的激活状态和打开状态在结构上与配体晶体结构相似,而在未配体的受体中,胞外域执行重排,导致围绕受体的纵轴顺时针旋转最多45度,从而关闭了离子通道。由LBD-TMD接头转移到膜锚定离子通道的配体诱导的胞外域旋转负责跨膜离子通道的打开和关闭,从而揭示了NMDA受体作为微调分子机器的特性。

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