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使用能量估计和丙氨酸扫描诱变预测髓系细胞白血病-1抑制剂界面的热点

Prediction of Hot Spots at Myeloid Cell Leukemia-1-Inhibitor Interface Using Energy Estimation and Alanine Scanning Mutagenesis.

作者信息

Marimuthu Parthiban, Singaravelu Kalaimathy

机构信息

Structural Bioinformatics Laboratory (SBL), Faculty of Science and Engineering, Biochemistry, Åbo Akademi University , Tykistökatu 6A, FI-20520 Turku, Finland.

Department of Biology, Albany State University , 504 College Dr., Albany, Georgia, United States.

出版信息

Biochemistry. 2018 Feb 20;57(7):1249-1261. doi: 10.1021/acs.biochem.7b01048. Epub 2018 Feb 1.

Abstract

Myeloid cell leukemia 1 (Mcl1) is an antiapoptotic protein that plays central role in apoptosis regulation. Also, Mcl1 has the potency to resist apoptotic cues resulting in up-regulation and cancer cell protection. A molecular probe that has the potential to specifically target Mcl1 and thereby provoke its down-regulatory activity is very essential. The aim of the current study is to probe the internal conformational dynamics of protein motions and potential binding mechanism in response to a series of picomolar range Mcl1 inhibitors using explicit-solvent molecular dynamics (MD) simulations. Subsequently, domain cross-correlation and principal component analysis was performed on the snapshots obtained from the MD simulations. Our results showed significant differences in the internal conformational dynamics of Mcl1 with respect to binding affinity values of inhibitors. Further, the binding free energy estimation, using three different samples, was performed on the MD simulations and revealed that the predicted energies (ΔG) were in good correlation with the experimental values (ΔG). Also, the energies obtained using all sampling models were efficiently ranked. Subsequently, the decomposition energy analysis highlighted the major energy-contributing residues at the Mcl1 binding pocket. Computational alanine scanning performed on high energy-contributing residues predicted the hot spot residues. The dihedral angle analysis using MD snapshots on the predicted hot spot residue exhibited consistency in side chain conformational motion that ultimately led to strong binding affinity values. The findings from the present study might provide valuable guidelines for the design of novel Mcl1 inhibitors that might significantly improve the specificity for new-generation chemotherapeutic agents.

摘要

髓样细胞白血病1(Mcl1)是一种抗凋亡蛋白,在细胞凋亡调控中起核心作用。此外,Mcl1具有抵抗凋亡信号的能力,从而导致其上调并保护癌细胞。一种有可能特异性靶向Mcl1并从而激发其下调活性的分子探针非常重要。本研究的目的是使用显式溶剂分子动力学(MD)模拟来探究蛋白质运动的内部构象动力学以及对一系列皮摩尔范围的Mcl1抑制剂的潜在结合机制。随后,对从MD模拟获得的快照进行了结构域交叉相关性和主成分分析。我们的结果表明,Mcl1的内部构象动力学在抑制剂的结合亲和力值方面存在显著差异。此外,对MD模拟进行了使用三种不同样本的结合自由能估计,结果表明预测的能量(ΔG)与实验值(ΔG)具有良好的相关性。而且,使用所有采样模型获得的能量都得到了有效排序。随后,分解能量分析突出了Mcl1结合口袋处的主要能量贡献残基。对高能量贡献残基进行的计算丙氨酸扫描预测了热点残基。使用MD快照对预测的热点残基进行的二面角分析在侧链构象运动中表现出一致性,最终导致了强结合亲和力值。本研究的结果可能为新型Mcl1抑制剂的设计提供有价值的指导,这可能会显著提高新一代化疗药物的特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/392e/6203182/0289517d8d7a/bi-2017-01048z_0001.jpg

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