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从原子模拟的马尔可夫状态建模中识别 PMI 在结合诱导折叠中的构象选择和诱导契合方面。

Identifying Conformational-Selection and Induced-Fit Aspects in the Binding-Induced Folding of PMI from Markov State Modeling of Atomistic Simulations.

机构信息

Max Planck Institute of Colloids and Interfaces , Department of Theory and Bio-Systems , Science Park Golm , 14424 Potsdam , Germany.

Freie Universität Berlin , Department of Mathematics and Computer Science , Arnimallee 6 , 14195 Berlin , Germany.

出版信息

J Phys Chem B. 2018 May 31;122(21):5649-5656. doi: 10.1021/acs.jpcb.7b12146. Epub 2018 Mar 27.

Abstract

Unstructured proteins and peptides typically fold during binding to ligand proteins. A challenging problem is to identify the mechanism and kinetics of these binding-induced folding processes in experiments and atomistic simulations. In this Article, we present a detailed picture for the folding of the inhibitor peptide PMI into a helix during binding to the oncoprotein fragment Mdm2 obtained from atomistic, explicit-water simulations and Markov state modeling. We find that binding-induced folding of PMI is highly parallel and can occur along a multitude of pathways. Some pathways are induced-fit-like with binding occurring prior to PMI helix formation, while other pathways are conformational-selection-like with binding after helix formation. On the majority of pathways, however, binding is intricately coupled to folding, without clear temporal ordering. A central feature of these pathways is PMI motion on the Mdm2 surface, along the binding groove of Mdm2 or over the rim of this groove. The native binding groove of Mdm2 thus appears as an asymmetric funnel for PMI binding. Overall, binding-induced folding of PMI does not fit into the classical picture of induced fit or conformational selection that implies a clear temporal ordering of binding and folding events. We argue that this holds in general for binding-induced folding processes because binding and folding events in these processes likely occur on similar time scales and do exhibit the time-scale separation required for temporal ordering.

摘要

无规则蛋白质和肽通常在与配体蛋白结合时折叠。一个具有挑战性的问题是在实验和原子模拟中识别这些结合诱导折叠过程的机制和动力学。在本文中,我们通过原子的、显式水的模拟和马尔可夫状态建模,为抑制剂肽 PMI 在与癌蛋白片段 Mdm2 结合过程中折叠成螺旋提供了一个详细的图像。我们发现,PMI 的结合诱导折叠具有高度的平行性,可以沿着多种途径发生。一些途径类似于诱导契合,结合发生在 PMI 螺旋形成之前,而其他途径类似于构象选择,结合发生在螺旋形成之后。然而,在大多数途径中,结合与折叠紧密耦合,没有明确的时间顺序。这些途径的一个核心特征是 PMI 在 Mdm2 表面上的运动,沿着 Mdm2 的结合槽或这个槽的边缘。因此,Mdm2 的天然结合槽似乎是 PMI 结合的不对称漏斗。总体而言,PMI 的结合诱导折叠不符合经典的诱导契合或构象选择的图像,因为这些图像暗示了结合和折叠事件的明确时间顺序。我们认为,这在一般的结合诱导折叠过程中都是如此,因为这些过程中的结合和折叠事件可能发生在相似的时间尺度上,并且确实表现出了时间顺序所需的时间尺度分离。

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