State Key Laboratory of Bioreactor Engineering, New World Institute of Biotechnology, East China University of Science and Technology, Shanghai, 200237, China.
Appl Microbiol Biotechnol. 2019 Aug;103(16):6393-6405. doi: 10.1007/s00253-019-09915-8. Epub 2019 Jun 24.
Nitrilase-mediated biocatalysis reactions have been continuously arousing wide interests by scholars and entrepreneurs in organic synthesis over the past six decades. Since regioselective nitrilases could hydrolyze only one cyano group of dinitriles into corresponding cyanocarboxylic acids, which are virtually impossible by chemical hydrolysis and of interest for a variety of applications, it becomes particularly appealing to synthetic chemists. The aim of the current review is to summarize the recent advancements on regioselective nitrilases concerning their fundamental researches and applications in synthesis of a series of high-value fine chemicals and pharmaceuticals. Carbon chain lengths and substituent group positions of substrates are found to be two crucial factors in affecting regioselectivity of nitrilase. Practical applications of regioselective nitrilases in synthesis of 1,5-dimethyl-2-piperidone (1,5-DMPD), atorvastatin, gabapentin, (R)-baclofen, and (S)-pregabalin were systematically reviewed. Future perspectives clearly elucidating the mechanism of regioselectivity and further molecular modifications of regioselective nitrilases integrating within silico technology for industrial applications were discussed.
在过去的六十年中,腈水解酶介导的生物催化反应一直引起有机合成领域学者和企业家的广泛关注。由于区域选择性腈水解酶只能水解二腈中的一个氰基基团生成相应的氰基羧酸,这在化学水解中几乎是不可能的,并且对于各种应用都很有意义,因此它对合成化学家来说特别有吸引力。本文综述了近年来区域选择性腈水解酶在一系列高价值精细化学品和药物合成中的基础研究和应用方面的最新进展。研究发现,底物的碳链长度和取代基位置是影响腈水解酶区域选择性的两个关键因素。综述了区域选择性腈水解酶在合成 1,5-二甲基-2-哌啶酮(1,5-DMPD)、阿托伐他汀、加巴喷丁、(R)-巴氯芬和(S)-普瑞巴林方面的实际应用。讨论了阐明区域选择性机制和进一步进行分子修饰的未来展望,以及将区域选择性腈水解酶与计算机技术相结合用于工业应用的未来展望。