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凋亡调节蛋白Bax、Bim和Mcl-1的BH3结构域的片段肽与抗凋亡蛋白Mcl-1结合的分子动力学研究。

Molecular dynamics study of segment peptides of Bax, Bim, and Mcl-1 BH3 domain of the apoptosis-regulating proteins bound to the anti-apoptotic Mcl-1 protein.

作者信息

Zhao Run-Ning, Fan Song, Han Ju-Guang, Liu Guang

机构信息

a Institute of Applied Mathematics and Physics , Shanghai Dianji University , Shanghai 201306 , P.R. China.

出版信息

J Biomol Struct Dyn. 2015;33(5):1067-81. doi: 10.1080/07391102.2014.929028. Epub 2014 Jun 30.

Abstract

Mcl-1 has emerged as a potential therapeutic target in the treatment of several malignancies. Peptides representing BH3 region of pro-apoptotic proteins have been shown to bind the hydrophobic cleft of anti-apoptotic Mcl-1 and this segment is responsible for modulating the apoptotic pathways in living cells. Understanding the molecular basis of protein-peptide interaction is required to develop potent inhibitors specific for Mcl-1. Molecular dynamics simulations were performed for Mcl-1 in complex with three different BH3 peptides derived from Mcl-1, Bax, and Bim. Accordingly, the calculated binding free energies using MM-PBSA method are obtained and comparison with the experimentally determined binding free energies is made. The interactions involving two conserved charged residues (Aspi, and Arg/Lysi-4) and three upstream conserved hydrophobic residues (Leui-5, Ile/Vali-2, and Glyi-1, respectively) of BH3 peptides play the important roles in the structural stability of the complexes. The calculated results exhibit that the interactions of Bim BH3 peptides to Mcl-1 is stronger than the complex with Bax 19BH3 peptides. The hydrophobic residues (position i - 9, i - 8 and i + 2) of BH3 peptides can be involved in their inhibitory specificity. The calculated results can be used for designing more effective MCL-1 inhibitors.

摘要

Mcl-1已成为多种恶性肿瘤治疗中的一个潜在治疗靶点。代表促凋亡蛋白BH3区域的肽已被证明可结合抗凋亡蛋白Mcl-1的疏水裂缝,且该片段负责调节活细胞中的凋亡途径。要开发对Mcl-1具有特异性的有效抑制剂,需要了解蛋白质-肽相互作用的分子基础。对Mcl-1与源自Mcl-1、Bax和Bim的三种不同BH3肽形成的复合物进行了分子动力学模拟。据此,使用MM-PBSA方法获得了计算出的结合自由能,并与实验测定的结合自由能进行了比较。BH3肽中涉及两个保守带电残基(分别为Aspi和Arg/Lysi-4)以及三个上游保守疏水残基(分别为Leui-5、Ile/Vali-2和Glyi-1)的相互作用在复合物的结构稳定性中起重要作用。计算结果表明,Bim BH3肽与Mcl-1的相互作用比与Bax 19BH3肽形成的复合物更强。BH3肽的疏水残基(位置i - 9、i - 8和i + 2)可参与其抑制特异性。计算结果可用于设计更有效的MCL-1抑制剂。

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