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Improving the thermal stability of trans-epoxysuccinate hydrolase

摘要This study used molecular dynamics simulations,B-factor analysis,and saturation mutagenesis screening to enhance the thermal stability of the trans-epoxysuccinate hydrolase(TESH)derived from Pseudomonas koreensis.Eleven mutants that influence this characteristic were selected,yielding four mutants with improved activity.Among them,mutants A142C and S178Q exhibited lower Michaelis constant(Km)values,and their kcat/Km ratios(kcat,catalytic constant)were 3.7 and 0.9 times higher than those of the wild type,respectively.The values of half-life at 50℃(T501/2)of the two mutants were increased by 107%and 59%,respectively,compared to the wild type.Molecular docking and molecular dynamics simulations indicated that the two mutants showed stronger substrate interaction,lower binding energy,and reduced root mean square deviation compared to the wild type,along with decreased electrostatic potential energy and increased hydrophobicity near their mutation sites.The study of protein thermal stability engineering and associated mechanisms provides a valuable reference and holds practical significance for the industrial production of meso-tartaric acid.

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作者 Wenna BAO [1] Jinfeng YAO [1] Haifeng PAN [2] Ronglin ZHU [1] Xinying LI [1] Hongxiu LIAO [1] 学术成果认领
作者单位 School of Biological and Chemical Engineering,Zhejiang University of Science and Technology,Hangzhou 310023,China [1] School of Life Sciences and Health,Huzhou College,Huzhou 313000,China [2]
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DOI 10.1631/jzus.B2500069
发布时间 2026-02-03(万方平台首次上网日期,不代表论文的发表时间)
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浙江大学学报(英文版)(B辑:生物医学和生物技术)

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