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通过蛋白质-聚电解质相互作用的非共价聚乙二醇化:动力学实验和分子动力学模拟。

Noncovalent PEGylation through Protein-Polyelectrolyte Interaction: Kinetic Experiment and Molecular Dynamics Simulation.

机构信息

Biomedical Research Institute, National Institute of Advanced Industrial Science and Technology (AIST) , Central 6, 1-1-1 Higashi, Tsukuba, Ibaraki 305-8566, Japan.

Faculty of Pure and Applied Sciences, University of Tsukuba , 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8573, Japan.

出版信息

J Phys Chem B. 2017 Jul 20;121(28):6785-6791. doi: 10.1021/acs.jpcb.7b02741. Epub 2017 Jul 11.

Abstract

Noncovalent binding of polyethylene glycol (PEG) to a protein surface is a unique protein handling technique to control protein function and stability. A diblock copolymer containing PEG and polyelectrolyte chains (PEGylated polyelectrolyte) is a promising candidate for noncovalent attachment of PEG to a protein surface because of the binding through multiple electrostatic interactions without protein denaturation. To obtain a deeper understanding of protein-polyelectrolyte interaction at the molecular level, we investigated the manner in which cationic PEGylated polyelectrolyte binds to anionic α-amylase in enzyme kinetic experiments and molecular dynamics (MD) simulations. Cationic PEG-block-poly(N,N-dimethylaminoethyl) (PEG-b-PAMA) inhibited the enzyme activity of anionic α-amylase due to binding of PAMA chains. Enzyme kinetics revealed that the inhibition of α-amylase activity by PEG-b-PAMA is noncompetitive inhibition manner. In MD simulations, the PEG-b-PAMA molecule was initially located at six different placements of the x-, y-, and z-axis ±20 Å from the center of α-amylase, which showed that the PEG-b-PAMA nonspecifically bound to the α-amylase surface, corresponding to the noncompetitive inhibition manner that stems from the polymer binding to an enzyme surface other than the active site. In addition, the enzyme activity of α-amylase in the presence of PEG-b-PAMA was not inhibited by increasing the ionic strength, consistent with the MD simulation; i.e., PEG-b-PAMA did not interact with α-amylase in high ionic strength conditions. The results reported in this paper suggest that enzyme inhibition by PEGylated polyelectrolyte can be attributed to the random electrostatic interaction between protein and polyelectrolyte.

摘要

非共价结合聚乙二醇(PEG)到蛋白质表面是控制蛋白质功能和稳定性的独特蛋白质处理技术。含有 PEG 和聚电解质链的嵌段共聚物(PEG 化聚电解质)是一种很有前途的非共价结合 PEG 到蛋白质表面的候选物,因为通过多个静电相互作用结合而不会导致蛋白质变性。为了在分子水平上更深入地了解蛋白质-聚电解质相互作用,我们在酶动力学实验和分子动力学(MD)模拟中研究了阳离子 PEG 化聚电解质与阴离子 α-淀粉酶结合的方式。阳离子 PEG 嵌段-聚(N,N-二甲基氨基乙基)(PEG-b-PAMA)由于 PAMA 链的结合而抑制了阴离子 α-淀粉酶的酶活性。酶动力学表明,PEG-b-PAMA 对 α-淀粉酶活性的抑制是非竞争性抑制方式。在 MD 模拟中,PEG-b-PAMA 分子最初位于 α-淀粉酶中心的 x、y 和 z 轴的 ±20 Å 六个不同位置,这表明 PEG-b-PAMA 非特异性地结合到 α-淀粉酶表面,与非竞争性抑制方式相对应,这种方式源于聚合物结合到酶表面而不是活性部位。此外,在存在 PEG-b-PAMA 的情况下,α-淀粉酶的酶活性没有被增加离子强度所抑制,与 MD 模拟一致;即,PEG-b-PAMA 在高离子强度条件下不会与 α-淀粉酶相互作用。本文报道的结果表明,PEG 化聚电解质对酶的抑制作用可以归因于蛋白质和聚电解质之间的随机静电相互作用。

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