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An unusual metal-bound 4-fluorothreonine transaldolase from Streptomyces sp. MA37 catalyses promiscuous transaldol reactions.

Wu, Linrui; Tong, Ming Him; Raab, Andrea; Fang, Qing; Wang, Shan; Kyeremeh, Kwaku; Yu, Yi; Deng, Hai*
OTHER
国家自然科学基金委员会
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摘要

beta-Hydroxy-alpha-amino acids (betaH-AAs) are key components of many bioactive molecules as well as exist as specialised metabolites. Among these betaH-AAs, 4-fluorothreonine (4-FT) is the only naturally occurring fluorinated AA discovered thus far. Here we report overexpression and biochemical characterisation of 4-fluorothreonine transaldolase from Streptomyces sp. MA37 (FTaseMA), a homologue of FTase previously identified in the biosynthesis of 4-FT in S. cattleya. FTaseMA displays considerable substrate plasticity to generate 4-FT as well as other beta-hydroxy-alpha-amino acids with various functionalities at C4 position, giving the prospect of new chemo-enzymatic applications. The enzyme has a hybrid of two catalytic domains, serine hydroxymethyltransferase (S) and aldolase (A). Site-directed mutagenesis allowed the identification of the key residues of FTases, suggesting that the active site of A domain has a historical reminiscent feature in metal-dependent aldolases. Elemental analysis demonstrated that FTaseMA is indeed a Zn(2+)-dependent enzyme, the first example of pyridoxal phosphate (PLP) enzyme family fused with a metal-binding domain carrying out a distinct catalytic role. Finally, FTaseMA showed divergent evolutionary origin with other PLP dependent enzymes.

关键词

4-fluorothreonine4-fluorothreonine transaldolaseStreptomyces sp. MA37Transaldolationbeta-Hydroxy-alpha-amino acids

出版信息

论文状态
公开发表
期刊名称
Appl Microbiol Biotechnol
发表日期
2020-3-6
卷
-
期
-
页码
-
DOI
10.1007/s00253-020-10497-z

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