D-allulose 3-epimerase for low-calorie D-allulose synthesis: microbial production, characterization, and applications

被引:2
|
作者
Xie, Xiaofang [1 ,2 ]
Li, Caiming [3 ,4 ]
Ban, Xiaofeng [3 ,4 ]
Yang, Hongshun [1 ,2 ]
Li, Zhaofeng [3 ,4 ]
机构
[1] Natl Univ Singapore, Dept Food Sci & Technol, Singapore 117542, Singapore
[2] Natl Univ Singapore, Suzhou Res Inst, Suzhou, Jiangsu, Peoples R China
[3] Jiangnan Univ, State Key Lab Food Sci & Technol, Wuxi, Peoples R China
[4] Jiangnan Univ, Sch Food Sci & Technol, Wuxi 214122, Peoples R China
基金
国家重点研发计划; 中国国家自然科学基金;
关键词
D-allulose; 3-epimerase; biotransformation; heterologous expression; biochemical characterization; molecular modification; D-PSICOSE; 3-EPIMERASE; D-GLUCOSE ISOMERASE; D-FRUCTOSE; AGROBACTERIUM-TUMEFACIENS; ESCHERICHIA-COLI; EXTRACELLULAR PRODUCTION; CRYSTAL-STRUCTURE; RARE KETOHEXOSES; ACTIVE-SITE; EXPRESSION;
D O I
10.1080/07388551.2024.2368517
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
D-allulose, an epimer of D-fructose at C-3 position, is a low-calorie rare sugar with favorable physiochemical properties and special physiological functions, which displays promising perspectives in the food and pharmaceutical industries. Currently, D-allulose is extremely sparse in nature and is predominantly biosynthesized through the isomerization of D-fructose by D-allulose 3-epimerase (DAEase). In recent years, D-allulose 3-epimerase as the key biocatalyst for D-allulose production has received increasing interest. The current review begins by providing a summary of D-allulose regarding its characteristics and applications, as well as different synthesis pathways dominated by biotransformation. Then, the research advances of D-allulose 3-epimerase are systematically reviewed, focusing on heterologous expression and biochemical characterization, crystal structure and molecular modification, and application in D-allulose production. Concerning the constraint of low yield of DAEase for industrial application, this review addresses the various attempts made to promote the production of DAEase in different expression systems. Also, various strategies have been adopted to improve its thermotolerance and catalytic activity, which is mainly based on the structure-function relationship of DAEase. The application of DAEase in D-allulose biosynthesis from D-fructose or low-cost feedstocks through single- or multi-enzymatic cascade reaction has been discussed. Finally, the prospects for related research of D-allulose 3-epimerase are also proposed, facilitating the industrialization of DAEase and more efficient and economical bioproduction of D-allulose.
引用
收藏
页码:353 / 372
页数:20
相关论文
共 50 条
  • [1] The Characterization of a Novel D-allulose 3-Epimerase from Blautia produca and Its Application in D-allulose Production
    Tang, Xinrui
    An, Yingfeng
    Iqbal, Muhammad Waheed
    Cong, Hongri
    Zhang, Guoyan
    Zhang, Yufei
    Ravikumar, Yuvaraj
    Zabed, Hossain M.
    Zhao, Mei
    Zhou, Haixing
    Qi, Xianghui
    FOODS, 2022, 11 (20)
  • [2] Characterization of a Recombinant d-Allulose 3-epimerase from Thermoclostridium caenicola with Potential Application in d-Allulose Production
    Chen, Jiajun
    Chen, Ding
    Ke, Mengyu
    Ye, Shengyuan
    Wang, Xinyu
    Zhang, Wenli
    Mu, Wanmeng
    MOLECULAR BIOTECHNOLOGY, 2021, 63 (06) : 534 - 543
  • [3] Characterization of a Recombinant d-Allulose 3-epimerase from Thermoclostridium caenicola with Potential Application in d-Allulose Production
    Jiajun Chen
    Ding Chen
    Mengyu Ke
    Shengyuan Ye
    Xinyu Wang
    Wenli Zhang
    Wanmeng Mu
    Molecular Biotechnology, 2021, 63 : 534 - 543
  • [4] Properties of D-allulose 3-epimerase mined from Novibacillus thermophilus and its application to synthesis of D-allulose
    Jia, Dong-Xu
    Sun, Chen-Yi
    Jin, Yi-Ting
    Liu, Zhi-Qiang
    Zheng, Yu-Guo
    Li, Mian
    Wang, Hong-Yan
    Chen, De-Shui
    ENZYME AND MICROBIAL TECHNOLOGY, 2021, 148
  • [5] Secreted D-allulose 3-epimerase for rare D-allulose biosynthesis and yeast-assisted isomer removal from D-allulose
    Xie, Xiaofang
    Jiang, Zihang
    Xi, Shixia
    Jiang, Liyuan
    Huang, Dejian
    Li, Zhaofeng
    FOOD BIOSCIENCE, 2024, 59
  • [6] Immobilization and stabilization of D-allulose 3-epimerase for continuous D-allulose synthesis in packed-bed reactors
    Xiao, Ziqun
    Jiang, Bo
    Chen, Jingjing
    Xiang, Longbei
    Zhang, Ran
    FOOD BIOSCIENCE, 2025, 64
  • [7] Redesign of a novel d-allulose 3-epimerase from Staphylococcus aureus for thermostability and efficient biocatalytic production of d-allulose
    Zhu, Zhangliang
    Gao, Dengke
    Li, Chao
    Chen, Ying
    Zhu, Menglu
    Liu, Xin
    Tanokura, Masaru
    Qin, Hui-Min
    Lu, Fuping
    MICROBIAL CELL FACTORIES, 2019, 18 (1)
  • [8] Redesign of a novel d-allulose 3-epimerase from Staphylococcus aureus for thermostability and efficient biocatalytic production of d-allulose
    Zhangliang Zhu
    Dengke Gao
    Chao Li
    Ying Chen
    Menglu Zhu
    Xin Liu
    Masaru Tanokura
    Hui-Min Qin
    Fuping Lu
    Microbial Cell Factories, 18
  • [9] Tailored magnetic silica-immobilized D-allulose 3-epimerase with enhanced stability and recyclability for efficient D-allulose production
    Xiao, Ziqun
    Jiang, Bo
    Xiang, Longbei
    Zhang, Ran
    Chen, Jingjing
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2025, 284
  • [10] Immobilization of cells expressing D-allulose 3-epimerase and their application in D-allulose bioproduction with the assistance of boric acid
    Wen, Xin
    Lin, Huibin
    Liu, Guangwen
    Ning, Yuhang
    Ren, Yilin
    Li, Can
    Zhang, Chengjia
    Dong, Nannan
    Lin, Jianqiang
    Song, Xin
    Zhuang, Guoqiang
    Lin, Jianqun
    FOOD BIOSCIENCE, 2025, 65