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工程化卷曲螺旋七聚体模拟水解酶的催化活性:计算研究的见解。

On the Catalytic Activity of the Engineered Coiled-Coil Heptamer Mimicking the Hydrolase Enzymes: Insights from a Computational Study.

机构信息

Department of Chemistry and Chemical Technologies, University of Calabria, 87036 Arcavacata di Rende, Cosenza, Italy.

出版信息

Int J Mol Sci. 2020 Jun 26;21(12):4551. doi: 10.3390/ijms21124551.

Abstract

Recently major advances were gained on the designed proteins aimed to generate biomolecular mimics of proteases. Although such enzyme-like catalysts must still suffer refinements for improving the catalytic activity, at the moment, they represent a good example of artificial enzymes to be tested in different fields. Herein, a de novo designed homo-heptameric peptide assembly (CC-Hept) where the esterase activity towards p-nitro-phenylacetate was obtained for introduction of the catalytic triad (Cys-His-Glu) into the hydrophobic matrix, is the object of the present combined molecular dynamics and quantum mechanics/molecular mechanics investigation. Constant pH Molecular Dynamics simulations on the apoform of CC-Hept suggested that the Cys residues are present in the protonated form. Molecular dynamics (MD) simulations of the enzyme-substrate complex evidenced the attitude of the enzyme-like system to retain water molecules, necessary in the hydrolytic reaction, in correspondence of the active site, represented by the Cys-His-Glu triad on each of the seven chains, without significant structural perturbations. A detailed reaction mechanism of esterase activity of CC-Hept-Cys-His-Glu was investigated on the basis of the quantum mechanics/molecular mechanics calculations employing a large quantum mechanical (QM) region of the active site. The proposed mechanism is consistent with available esterases kinetics and structural data. The roles of the active site residues were also evaluated. The deacylation phase emerged as the rate-determining step, in agreement with esterase activity of other natural proteases.

摘要

最近,在设计旨在生成蛋白酶生物分子模拟物的蛋白质方面取得了重大进展。尽管此类酶样催化剂仍需进行改进以提高催化活性,但目前它们代表了一种可在不同领域进行测试的人工酶的良好范例。在此,介绍一种从头设计的同型七聚体肽组装体(CC-Hept),该组装体对 p-硝基苯乙酸酯具有酯酶活性,通过将催化三联体(Cys-His-Glu)引入疏水性基质中获得。本研究采用了组合分子动力学和量子力学/分子力学方法对其进行了综合研究。对 CC-Hept 的apo 形式进行的恒 pH 分子动力学模拟表明,Cys 残基呈质子化形式存在。酶-底物复合物的分子动力学(MD)模拟表明,该酶样体系能够保留水分子,这些水分子在水解反应中是必需的,并且位于活性位点,由每个七链上的 Cys-His-Glu 三联体表示,而不会引起明显的结构扰动。基于对活性位点的量子力学/分子力学计算,对 CC-Hept-Cys-His-Glu 的酯酶活性的详细反应机制进行了研究。所提出的机制与现有的酯酶动力学和结构数据一致。还评估了活性位点残基的作用。脱酰基阶段是决定速率的步骤,这与其他天然蛋白酶的酯酶活性一致。

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