Key Laboratory of Industrial Fermentation Microbiology, Ministry of Education, College of Biotechnology, Tianjin University of Science and Technology, Tianjin 300457, China; National Engineering Laboratory for Industrial Enzymes and Tianjin Engineering Research Center of Biocatalytic Technology, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, 32 West 7th Avenue, Tianjin Airport Economic Area, Tianjin 300308, China.
National Engineering Laboratory for Industrial Enzymes and Tianjin Engineering Research Center of Biocatalytic Technology, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, 32 West 7th Avenue, Tianjin Airport Economic Area, Tianjin 300308, China.
Enzyme Microb Technol. 2020 Jun;137:109551. doi: 10.1016/j.enzmictec.2020.109551. Epub 2020 Mar 9.
l-Threonine aldolases (l-TAs) catalyze the aldol condensation of aldehyde and glycine, offering direct enzymatic synthesis of β-hydroxy-α-amino acids under mild conditions. However, this method suffers from moderate yield and low stereoselectivity at the β-carbon. Given the importance of 4-(methylsulfonyl)phenylserine for the synthesis of florfenicol and thiamphenicol, mutations of a l-threonine aldolase from Pseudomonas sp. (l-PsTA) were performed in this study by error-prone PCR and combinatorial mutation. Some beneficial mutants were obtained by screening the mutant library using a stepwise visual method. 4-(Methylsulfonyl)phenylserine was synthesized in up to 71 % diastereomeric excess (de), which are much higher than the previously reported 2 % de value, by using the newly identified mutants. The mutants V200I and C187S/V200I were found to improve the product yield and stereoselectivity for the aldol condensation of various benzaldehydes with glycine. These results show that the amino acid residues outside of the substrate-binding cavity of l-PsTA play an important role in determining its C-stereoseletivity.
l-苏氨酸醛缩酶(l-TAs)能够催化醛和甘氨酸的Aldol 缩合反应,在温和条件下提供β-羟基-α-氨基酸的直接酶法合成。然而,这种方法在β-碳上的产率适中,立体选择性低。鉴于 4-(甲基磺酰基)苯丝氨酸对氟苯尼考和硫霉素合成的重要性,本研究通过易错 PCR 和组合突变对来自假单胞菌的 l-苏氨酸醛缩酶(l-PsTA)进行了突变。通过逐步可视化方法筛选突变文库,获得了一些有益的突变体。通过使用新鉴定的突变体,4-(甲基磺酰基)苯丝氨酸的合成最高可达 71%的非对映体过量(de),远高于之前报道的 2%de 值。突变体 V200I 和 C187S/V200I 被发现能够提高各种苯甲醛与甘氨酸的Aldol 缩合反应的产物产率和立体选择性。这些结果表明,l-PsTA 底物结合腔外的氨基酸残基在决定其 C-立体选择性方面起着重要作用。