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分子动力学模拟揭示apo-HisJ 可以采取封闭构象。

Molecular dynamics simulations reveal that apo-HisJ can sample a closed conformation.

机构信息

Department of Biological Sciences, University of Calgary, Calgary, Alberta T2N 1N4, Canada.

出版信息

Proteins. 2014 Mar;82(3):386-98. doi: 10.1002/prot.24396. Epub 2013 Oct 17.

DOI:10.1002/prot.24396
PMID:23966221
Abstract

The Escherichia coli histidine binding protein HisJ is a type II periplasmic binding protein (PBP) that preferentially binds histidine and interacts with its cytoplasmic membrane ABC transporter, HisQMP2 , to initiate histidine transport. HisJ is a bilobal protein where the larger Domain 1 is connected to the smaller Domain 2 via two linking strands. Type II PBPs are thought to undergo "Venus flytrap" movements where the protein is able to reversibly transition from an open to a closed conformation. To explore the accessibility of the closed conformation to the apo state of the protein, we performed a set of all-atom molecular dynamics simulations of HisJ starting from four different conformations: apo-open, apo-closed, apo-semiopen, and holo-closed. The simulations reveal that the closed conformation is less dynamic than the open one. HisJ experienced closing motions and explored semiopen conformations that reverted to closed forms resembling those found in the holo-closed state. Essential dynamics analysis of the simulations identified domain closing/opening and twisting as main motions. The formation of specific inter-hinge strand and interdomain polar interactions contributed to the adoption of the closed apo-conformations although they are up to 2.5-fold less prevalent compared with the holo-closed simulations. The overall sampling of the closed form by apo-HisJ provides a rationale for the binding of unliganded PBPs with their cytoplasmic membrane ABC transporters.

摘要

大肠杆菌组氨酸结合蛋白 HisJ 是一种 II 型周质结合蛋白 (PBP),它优先结合组氨酸,并与细胞质膜 ABC 转运体 HisQMP2 相互作用,启动组氨酸转运。HisJ 是一种双叶蛋白,其中较大的结构域 1 通过两个连接链与较小的结构域 2 相连。据认为,II 型 PBPs 会发生“捕蝇草”运动,使蛋白质能够可逆地从开放构象转变为闭合构象。为了探索封闭构象对蛋白质的apo 状态的可及性,我们对 HisJ 进行了一系列全原子分子动力学模拟,从四个不同的构象开始:apo-open、apo-closed、apo-semiopen 和 holo-closed。模拟表明,封闭构象比开放构象的动态性更低。HisJ 经历了关闭运动,并探索了类似于 holo-closed 状态中发现的半开放构象。模拟的基本动力学分析确定了结构域的关闭/打开和扭曲是主要运动。虽然与 holo-closed 模拟相比,形成特定的铰链间链和结构域间极性相互作用的频率要低 2.5 倍,但它们有助于形成封闭的 apo 构象。apo-HisJ 对封闭形式的总体采样为未配体结合的 PBPs 与其细胞质膜 ABC 转运体的结合提供了依据。

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