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Engineering of Thermomyces lanuginosus lipase Lip: creation of novel biocatalyst for efficient biosynthesis of chiral intermediate of Pregabalin

机译:嗜热霉菌脂肪酶嘴唇的工程:新型生物催化剂的创建,以有效地生物合成普瑞巴林的手性中间体

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摘要

Efficient and highly enantioselective hydrolysis of 2-carboxyethyl-3-cyano-5-methylhexanoic acid ethyl ester (CNDE) is the most crucial step in chemoenzymatic synthesis of Pregabalin. By using site-saturation mutagenesis and high-throughput screening techniques, lipase Lip from Thermomyces lanuginosus DSM 10635 was engineered to improve its activity towards CNDE. The triple mutant, S88T/A99N/V116D exhibited a 60-fold improvement in specific activity for CNDE (2.35 U/mg) over the wild-type Lip (0.039 U/mg). Modeling and docking studies demonstrated that the mutant could more effectively stabilize oxygen anions in transition states and the lid of Lip in the open conformation. Additionally, the kinetic resolution of CNDE catalyzed by Escherichia coli cell overexpressing S88T/A99N/V116D mutant afforded (3S)-2-carboxyethyl-3-cyano-5-methylhexanoic acid in 42.4 % conversion and 98 % ee within 20 h with a substrate loading of 1M(255 g/l). These results demonstrated that a novel and promising biocatalyst was created for efficient chemoenzymatic manufacturing of Pregabalin.
机译:2-羧乙基-3-氰基-5-甲基己酸乙酯(CNDE)的高效,高度对映选择性水解是化学合成普瑞巴林的最关键步骤。通过使用位点饱和诱变和高通量筛选技术,改造了来自嗜热霉菌DSM 10635的脂肪酶Lip,以提高其对CNDE的活性。三突变体S88T / A99N / V116D的CNDE比活性(2.35 U / mg)比野生型Lip(0.039 U / mg)提高了60倍。建模和对接研究表明,该突变体可以更有效地稳定处于过渡态的氧阴离子和处于开放构象的Lip的盖。此外,由大肠杆菌细胞过表达S88T / A99N / V116D突变体催化的CNDE的动力学拆分提供了(3S)-2-羧乙基-3-氰基-5-甲基己酸(3S)-2-羧基乙基-3-氰基-5-甲基己酸,在20 h内有底物装载量为1M(255 g / l)。这些结果表明,为有效的化学酶法制备普瑞巴林创造了一种新颖而有前途的生物催化剂。

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