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利用定向进化和分子动力学模拟提高凝结芽孢杆菌碱性蛋白酶的活性和稳定性。

Improving the activity and stability of Bacillus clausii alkaline protease using directed evolution and molecular dynamics simulation.

机构信息

Key Laboratory of Industrial Fermentation Microbiology, Ministry of Education, Tianjin Key Laboratory of Industrial Microbiology, National Engineering Laboratory for Industrial Enzymes, The College of Biotechnology, Tianjin University of Science and Technology, Tianjin, 300457, PR China.

Key Laboratory of Industrial Fermentation Microbiology, Ministry of Education, Tianjin Key Laboratory of Industrial Microbiology, National Engineering Laboratory for Industrial Enzymes, The College of Biotechnology, Tianjin University of Science and Technology, Tianjin, 300457, PR China.

出版信息

Enzyme Microb Technol. 2021 Jun;147:109787. doi: 10.1016/j.enzmictec.2021.109787. Epub 2021 Mar 24.

Abstract

Detergent enzymes have been developed extensively as eco-friendly substitutes for the harmful chemicals in detergent. Among them, alkaline protease accounts for a large share of detergent enzyme sales. Thus, improving the specific activity of alkaline protease could play an important role in reducing the cost of detergent enzymes. In our study, alkaline protease from Bacillus clausii (PRO) was used to construct a mutant library through directed evolution using error-prone PCR, and a variant (G95P) with 9-fold enhancement in specific activity was obtained. After incubation at a pH of 11.0 for 70 h, G95P maintained 67 % of its maximal activity, which was 46 % more than wild-type PRO (WT), indicating that G95P has better alkaline stability than WT. The thermostability of G95P was also enhanced, as G95P achieved 17 % initial activity after incubation for 50 h at 60 °C, while WT lost its activity. The MD simulation results verified that variant G95P possessed improved stability of its Gly95-Gly100 loop region and Arg19-Asp265 salt bridge, leading to enhanced stability and catalytic efficiency. This work enhances the understanding of the structure-function relationship of PRO and provides an academic foundation for improving the enzymatic properties of PRO to satisfy industrial requirements using protein engineering.

摘要

去污酶已被广泛开发为环保替代品,用以替代去污剂中的有害化学物质。其中,碱性蛋白酶占去污酶销售额的很大一部分。因此,提高碱性蛋白酶的比活性对于降低去污酶的成本将起到重要作用。在我们的研究中,使用地衣芽孢杆菌碱性蛋白酶(PRO)通过易错 PCR 进行定向进化构建突变文库,并获得了比活提高 9 倍的变体(G95P)。在 pH 值为 11.0 下孵育 70 h 后,G95P 保持了其最大活性的 67%,比野生型 PRO(WT)高 46%,表明 G95P 的碱性稳定性比 WT 更好。G95P 的热稳定性也得到了增强,G95P 在 60°C 下孵育 50 h 后仍保持 17%的初始活性,而 WT 则失去了活性。MD 模拟结果证实,变体 G95P 具有更好的 Gly95-Gly100 环区域稳定性和 Arg19-Asp265 盐桥,从而提高了稳定性和催化效率。这项工作增强了对 PRO 结构-功能关系的理解,并为使用蛋白质工程提高 PRO 的酶学性质以满足工业需求提供了理论基础。

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