College of Chemical Engineering, Fuzhou University, 350116, Fuzhou, P. R. China.
College of Chemistry, Fuzhou University, 350116, Fuzhou, P. R. China.
Chemistry. 2021 Jul 2;27(37):9654-9660. doi: 10.1002/chem.202100752. Epub 2021 May 19.
l-Threonine aldolase from Actinocorallia herbida (AhLTA) is an ideal catalyst for producing l-threo-4-methylsulfonylphenylserine [(2S,3R)-1 b], a key chiral precursor for florfenicol and thiamphenicol. The moderate C stereoselectivity is the main obstacle to the industrial application of AhLTA. To address this issue, a combinatorial active-site saturation test (CAST) together with sequence conservatism analysis was applied to engineer the AhLTA toward improved C stereoselectivity. The optical mutant Y314R could asymmetrically synthesize l-threo-4-methylsulfonylphenylserine with 81 % diastereomeric excess (de), which is 23 % higher than wild-type AhLTA. Molecular dynamic (MD) simulations revealed that the mechanism for the improvement in C stereoselectivity of Y314R is due to the acylamino group of residues Arg314 controlling the orientation of substrate 4-methylsulfonyl benzaldehyde (1 a) in the active pocket by directed interaction with the methylsulfonyl group; this leads to asymmetric synthesis of l-threo-4-methylsulfonylphenylserine. The success in this study demonstrates that direct control of substrates in an active pocket is an attract strategy to address the C stereoselectivity problem of LTA and contribute to the industrial application of LTA.
来自 Actinocorallia herbida 的 l-苏氨酸醛缩酶(AhLTA)是生产 l-threo-4-甲基磺酰基苯丝氨酸[(2S,3R)-1b]的理想催化剂,l-threo-4-甲基磺酰基苯丝氨酸是氟苯尼考和硫霉素的关键手性前体。中等的 C 立体选择性是阻碍 AhLTA 工业应用的主要障碍。为了解决这个问题,采用组合活性位点饱和试验(CAST)和序列保守性分析来对 AhLTA 进行工程改造,以提高 C 立体选择性。光学突变体 Y314R 可以不对称合成 l-threo-4-甲基磺酰基苯丝氨酸,对映体过量(de)为 81%,比野生型 AhLTA 高 23%。分子动力学(MD)模拟表明,Y314R 提高 C 立体选择性的机制是由于残基 Arg314 的酰氨基基团通过与甲基磺酰基的定向相互作用控制底物 4-甲基磺酰基苯甲醛(1a)在活性口袋中的取向;这导致 l-threo-4-甲基磺酰基苯丝氨酸的不对称合成。本研究的成功证明了直接控制活性口袋中的底物是解决 LTA 的 C 立体选择性问题的一种有吸引力的策略,并有助于 LTA 的工业应用。