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首页> 外文期刊>Catalysis Letters >Studies on Biological Production of Isomaltulose Using Sucrose Isomerase: Current Status and Future Perspectives
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Studies on Biological Production of Isomaltulose Using Sucrose Isomerase: Current Status and Future Perspectives

机译:使用蔗糖异构酶的异麦芽酮糖生物生产研究:当前状态和未来观点

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摘要

Isomaltulose, as a safe sucrose substitute, is widely used as a functional sweetener due to its promising properties, such as slower digestion, prolonged energy release, and less cariogenicity. The transformation of sucrose to isomaltulose by free sucrose isomerase (SIase) or microbial cells harboring the SIase gene has received considerable attention in the industry. Heterologous expression of SIase in food-safe grade strains has become a hot topic due to its broad applicability in the food industry. Thanks to rapid developments in genetic engineering technology, SIases from different sources have been heterogeneously expressed in Escherichia coli, which significantly increased the enzyme's titer. This review presents a systematic and detailed summary of the contemporary biotechnological approaches employed for isomaltulose production, including the source, structural determination, catalysis mechanism, heterologous expression, catalytic reaction condition optimization of SIase, and immobilization of cells. In addition, protein engineering, heterologous expression in food-grade safety strains, fermentation optimization strategies, and immobilization techniques of SIase are introduced in detail. Towards the end, the review is wrapped up with the concluding remarks, and future strategies are outlined for improving the biological production of isomaltulose.Graphical Abstract Summary of biological isomaltulose production from sucrose catalyzed by sucrose isomerase.
机译:异麦芽酮糖作为一种安全的蔗糖替代品,因其具有消化速度慢、能量释放时间长、致龋性小等优点而被广泛用作功能性甜味剂。通过游离蔗糖异构酶(SIase)或携带SIase基因的微生物细胞将蔗糖转化为异麦芽酮糖在工业上受到了广泛关注。SIase在食品安全级菌株中的异源表达因其在食品工业中的广泛适用性而成为一个热门话题。由于基因工程技术的迅速发展,来自不同来源的唾液酸酶在大肠杆菌中得到了异质性表达,从而显著提高了该酶的效价。本文对异麦芽酮糖的来源、结构测定、催化机理、异源表达、催化反应条件优化和细胞固定化等现代生物技术方法进行了系统而详细的综述。此外,还详细介绍了蛋白质工程、食品级安全菌株的异源表达、发酵优化策略以及唾液酸酶的固定化技术。最后,总结了本文的综述,并概述了提高异麦芽酮糖生物生产的未来策略。蔗糖异构酶催化蔗糖生物生产异麦芽酮糖的图表摘要摘要。

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