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核糖醇脱氢酶热稳定性改造及其在全细胞催化制备阿洛醇中的应用

李志浩 吴敬 夏伟

食品科学技术学报2026,Vol.44Issue(3):44-54,11.
食品科学技术学报2026,Vol.44Issue(3):44-54,11.DOI:10.12301/spxb202500612

核糖醇脱氢酶热稳定性改造及其在全细胞催化制备阿洛醇中的应用

Thermostability Engineering of Ribitol Dehydrogenase and Its Application in Whole-Cell Catalytic Production of Allitol

李志浩 1吴敬 1夏伟1

作者信息

  • 1. 江南大学生物工程学院/工业生物技术教育部重点实验室,江苏无锡 214122||江南大学食品科学与资源挖掘全国重点实验室,江苏无锡 214122
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摘要

Abstract

Allitol is a six-carbon rare sugar alcohol with physiological activities such as antihypertensive and anti-obesity effects,holding application value in the functional food and pharmaceutical industries.Currently,whole-cell catalysis for allitol production is still limited by relatively low reaction temperatures.Ribitol dehydrogenase(PaRDH),which catalyzes the reduction of psicose to allitol,typically functions optimally under low to moderate temperature conditions,which not only reduces conversion efficiency but also increases process risks such as microbial contamination.To enhance the application performance of PaRDH,multiple strategies including PROSS web-based prediction,free energy analysis,and conserved site analysis were employed to systematically modify the thermostability of PaRDH.In the first round of mutagenesis,11 mutants with improved performance were obtained.After another round of combinatorial mutagenesis,10 mutants with significantly enhanced thermostability were generated.Among them,the initial enzyme activity of mutant PaRDHVM-N7G-I93V increased by 30.68%compared to the template PaRDHVM,and its half-life was extended from 7.66 h to 16.26 h.This mutant was then introduced into a three-enzyme cascade system,and the resulting engineered strain was designated as Ec/DRF-Therm-VMGV.Using a cell dosage of 10 OD600 at 45℃for 24 h,the allitol conversion rate reached 79.43%,which was 4.10%higher than that of the control strain harboring PaRDHVM.Subsequently,the concentration of sodium formate in the reaction system was optimized and increased from 0.75 mol/L to 1.00 mol/L.Finally,using the engineered strain Ec/DRF-Therm-VMGV as the catalyst at a cell concentration of 15 OD600,the allitol conversion rates reached 83.10%and 90.45%after 12 h and 24 h of reaction,respectively,representing the highest levels reported to date.This study aimed to provide a theoretical reference for improving the production efficiency of allitol and promoting its industrial application.

关键词

阿洛醇/全细胞催化/多级酶联/核糖醇脱氢酶/热稳定性改造

Key words

allitol/whole-cell biocatalysis/multi-enzyme cascades/ribitol dehydrogenase/thermostability engineering

分类

轻工纺织

引用本文复制引用

李志浩,吴敬,夏伟..核糖醇脱氢酶热稳定性改造及其在全细胞催化制备阿洛醇中的应用[J].食品科学技术学报,2026,44(3):44-54,11.

基金项目

国家重点研发计划项目(2024YFF1106300).National Key Research and Development Program of China(2024YFF1106300). (2024YFF1106300)

食品科学技术学报

2095-6002

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