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通过调节底物结合口袋来控制底物进入的方向,提高 l-苏氨酸醛缩酶的 C 立体选择性,以合成 l-threo-4-甲基磺酰基苯丝氨酸。

Improving the C Stereoselectivity of l-Threonine Aldolase for the Synthesis of l-threo-4-Methylsulfonylphenylserine by Modulating the Substrate-Binding Pocket To Control the Orientation of the Substrate Entrance.

机构信息

College of Chemical Engineering, Fuzhou University, 350116, Fuzhou, P. R. China.

College of Chemistry, Fuzhou University, 350116, Fuzhou, P. R. China.

出版信息

Chemistry. 2021 Jul 2;27(37):9654-9660. doi: 10.1002/chem.202100752. Epub 2021 May 19.

Abstract

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.

摘要

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。

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