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研究化学性质不同结合位点的多金属氧酸盐-蛋白质相互作用。

Investigating Polyoxometalate-Protein Interactions at Chemically Distinct Binding Sites.

机构信息

Department of Chemistry , University of Miami , Coral Gables , Florida 33146 , United States.

Department of Chemistry , KU Leuven , Leuven 3000 , Belgium.

出版信息

J Phys Chem B. 2018 Jul 26;122(29):7219-7232. doi: 10.1021/acs.jpcb.8b02931. Epub 2018 Jul 18.

Abstract

In this study, a combined molecular docking (rigid and flexible) and all-atom molecular dynamics simulations technique have been employed to investigate interactions of 1:1 Zr-containing Keggin polyoxometalate (ZrK) with four chemically distinct cleavage sites [Arg114-Leu115 (site 1), Ala257-Asp258 (site 2), Lys313-Asp314 (site 3), and Cys392-Glu393 (site 4)] of human serum albumin (HSA). The ZrK-HSA complexations were analyzed using electrostatic potentials, the chemical nature of amino acid residues, binding free energies, and secondary structures as parameters. They suggested that ZrK binds in a rather distinct manner to different cleavage sites, and its association was dominated by hydrogen bonding, both direct and solvent mediated, and electrostatic interactions, as suggested experimentally. The computed binding free interaction energies (-57.5, -24.2, -50.8, and -91.2 kJ/mol for sites 1, 2, 3, and 4, respectively) predicted the existence of one major binding site (site 4) and three minor binding sites (site 1, site 2, and site 3). The strong exothermicity of the binding was also supported by isothermal calorimetry experiments. Additionally, the binding of ZrK did not alter the overall α-helical secondary structure of HSA, which was in line with experimental observation. Furthermore, hydrolysis of the peptide bonds of the substrate was found to retain its overall structure. These results have provided a deeper understanding of the complex ZrK interactions with proteins, and they will lead to the design of the next generation of catalytically active polyoxometalates with improved hydrolytic activities.

摘要

在这项研究中,采用了结合分子对接(刚性和柔性)和全原子分子动力学模拟技术,研究了 1:1 含锆的 Keggin 多金属氧酸盐(ZrK)与人类血清白蛋白(HSA)中四个化学性质不同的切割位点 [Arg114-Leu115(位点 1)、Ala257-Asp258(位点 2)、Lys313-Asp314(位点 3)和 Cys392-Glu393(位点 4)] 的相互作用。使用静电势、氨基酸残基的化学性质、结合自由能和二级结构等参数分析了 ZrK-HSA 络合物。结果表明,ZrK 以相当独特的方式与不同的切割位点结合,其结合主要由氢键、直接和溶剂介导的氢键以及静电相互作用主导,这与实验结果一致。计算得出的结合自由相互作用能(分别为-57.5、-24.2、-50.8 和-91.2 kJ/mol,用于位点 1、2、3 和 4)预测了一个主要结合位点(位点 4)和三个次要结合位点(位点 1、位点 2 和位点 3)的存在。结合的强放热性也得到了等温量热实验的支持。此外,ZrK 的结合并没有改变 HSA 的整体α-螺旋二级结构,这与实验观察结果一致。此外,还发现底物肽键的水解保留了其整体结构。这些结果提供了对 ZrK 与蛋白质复杂相互作用的更深入理解,并将导致设计具有改进水解活性的下一代催化活性多金属氧酸盐。

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