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从分子动力学模拟、增强采样和口袋串扰分析中洞察 Mcl-1 构象状态和变构抑制机制。

Insights into Mcl-1 Conformational States and Allosteric Inhibition Mechanism from Molecular Dynamics Simulations, Enhanced Sampling, and Pocket Crosstalk Analysis.

机构信息

Normandy Univ, UNICAEN, Centre d'Etude et Recherche sur le Médicament de Normandie (CERMN), 14000 Caen, France.

出版信息

J Chem Inf Model. 2020 Jun 22;60(6):3172-3187. doi: 10.1021/acs.jcim.0c00315. Epub 2020 May 28.

Abstract

In this study, we explored the structural dynamics of Mcl-1, an anti-apoptotic protein. On the basis of structural ensembles, the essential dynamics was extracted and showed two major axes of variability: a breathing motion at the binding interface and a correlated motion through the internal loops. A free energy surface characterizing the breathing motion at the binding interface was generated and suggested an equilibrium between a closed conformation and a "ready to bind" conformation as the predominant states of Mcl-1 in solution. Moreover, the analysis of the dynamics along the internal loops revealed a hidden communication network of transient and cryptic pockets controlling the allosteric inhibition of Mcl-1. A detailed model joining the pocket crosstalk and salt bridge networks along the internal loops was proposed and allowed us to shed light on the key interactions governing Mcl-1's allosteric inhibition.

摘要

在这项研究中,我们探索了抗凋亡蛋白 Mcl-1 的结构动力学。基于结构集合,提取了基本动力学,并显示出两个主要的可变性轴:结合界面的呼吸运动和通过内部环的相关运动。生成了一个描述结合界面呼吸运动的自由能表面,表明在溶液中 Mcl-1 的主要状态是在封闭构象和“准备结合”构象之间的平衡。此外,对内部环上的动力学分析揭示了一个隐藏的瞬态和隐蔽口袋的通信网络,控制着 Mcl-1 的变构抑制。提出了一个详细的模型,将内部环上的口袋串扰和盐桥网络结合起来,使我们能够揭示控制 Mcl-1 变构抑制的关键相互作用。

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