生物学杂志 ›› 2025, Vol. 42 ›› Issue (6): 21-.doi: 10.3969/j.issn.2095-1736.2025.06.021

• 研究报告 • 上一篇    下一篇

共进化残基改造提升腈水解酶热稳定性

王莉萍, 李 萌, 李子奕, 韩来闯, 周哲敏   

  1. 江南大学 生物工程学院, 无锡 214122
  • 出版日期:2025-12-18 发布日期:2025-12-19
  • 通讯作者: 周哲敏,博士,教授,研究方向为酶学与酶工程,E-mail:zhmzhou@jiangnan.edu.cn
  • 作者简介:王莉萍,硕士研究生,研究方向为酶的理性设计,E-mail:wanglp8128@163.com
  • 基金资助:
    国家重点研发计划项目(2023YFA0914500); 中国创新挑战赛(宁波)重大专项(2023T020)

Engineering of coevolutionary residues to enhance nitrilase thermostability

WANG Liping, LI Meng, LI Ziyi, HAN Laichuang, ZHOU Zhemin   

  1. School of Biotechnology, Jiangnan University, Wuxi 214122, China
  • Online:2025-12-18 Published:2025-12-19

摘要: 研究以前期报道的高效催化3-氰基吡啶生成烟酸的突变体C57E10(衍生自腈水解酶Nit6803)为对象,利用共进化残基分析挖掘影响其鲁棒性的关键功能位点。对共进化残基对直接设计饱和组合突变,并以折叠自由能变化(ddG)虚拟筛选潜在的热稳定性提升的突变。筛选获得K44Y和Q120L/A166L两个突变体,维持高催化活性的同时,显著提升了酶的热稳定性,50 ℃下的半衰期从C57E10的15.1 min,分别提升至34.5 min和21.4 min。然而,将K44Y和Q120L/A166L进一步组合,热稳定性大幅下降,表现出明显的负向上位效应。结构分析表明,K44Y增强了其与I274的疏水作用,Q120L/A166L形成了更紧密的疏水作用网络,从而提高了酶的结构稳定性。研究不仅获得了具备应用潜力的热稳定腈水解酶,所使用的基于共进化残基分析和突变计算相结合的策略也为其他酶的理性设计提供了借鉴。

关键词: 腈水解酶, 共进化残基, 理性设计, 热稳定性, 分子动力学模拟

Abstract: In this study, coevolutionary residue analysis was used to identify key functional sites affecting the robustness of C57E10 (derived from Nit6803), an enzyme that efficiently catalyzes the production of nicotinic acid from 3-cyanopyridine. Saturation combinatorial mutations were designed directly on the coevolutionary residues and the potential thermostability-enhanced mutations were evaluated by the change of folding free energy (ddG). Two mutants, K44Y and Q120L/A166L, were screened out, which maintained high catalytic activity with significantly enhanced thermostability, and the half-life in C57E10 at 50 ℃ was increased from 15.1 min to 34.5 min and 21.4 min, respectively. However, the further combination of K44Y and Q120L/A166L resulted in a dramatic decrease in thermostability, revealing strong negative epistasis. Structural analysis showed that K44Y enhanced its hydrophobic interaction with I274, whereas Q120L/A166L established denser hydrophobic interaction networks, thereby improving the structural stability. In this study, the nitrilase with high thermostability was obtained, and the strategy based on combination of coevolutionary residue analysis and mutation calculations also provided an applicable reference for the rational design of other enzymes.

Key words: nitrilases, coevolutionary residues, rational design, thermostability, molecular dynamics simulation

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