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首页> 外文期刊>Applied Microbiology and Biotechnology >Recent advances on halohydrin dehalogenases-from enzyme identification to novel biocatalytic applications
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Recent advances on halohydrin dehalogenases-from enzyme identification to novel biocatalytic applications

机译:卤代醇脱卤酶的最新进展-从酶鉴定到新的生物催化应用

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摘要

Halohydrin dehalogenases are industrially relevant enzymes that catalyze the reversible dehalogenation of vicinal haloalcohols with formation of the corresponding epoxides. In the reverse reaction, also other negatively charged nucleophiles such as azide, cyanide, or nitrite are accepted besides halides to open the epoxide ring. Thus, novel C-N, C-C, or C-O bonds can be formed by halohydrin dehalogenases, which makes them attractive biocatalysts for the production of various beta-substituted alcohols. Despite the fact that only five individual halohydrin dehalogenase enzyme sequences have been known until recently enabling their heterologous production, a large number of different biocatalytic applications have been reported using these enzymes. The recent characterization of specific sequence motifs has facilitated the identification of novel halohydrin dehalogenase sequences available in public databases and has largely increased the number of recombinantly available enzymes. These will help to extend the biocatalytic repertoire of this enzyme family and to foster novel biotechnological applications and developments in the future. This review gives a general overview on the halohydrin dehalogenase enzyme family and their biochemical properties and further focuses on recent developments in halohydrin dehalogenase biocatalysis and protein engineering.
机译:卤代醇脱卤酶是工业上相关的酶,其催化邻位卤代醇的可逆脱卤并形成相应的环氧化物。在逆反应中,除了卤化物以外,还接受其他带负电荷的亲核试剂,例如叠氮化物,氰化物或亚硝酸盐以打开环氧化物。因此,新的C-N,C-C或C-O键可通过卤代醇脱卤酶形成,这使其成为用于生产各种β-取代醇的有吸引力的生物催化剂。尽管只有五个单独的卤代醇脱卤酶序列直到最近才能够实现其异源生产这一事实已被人们所知,但是使用这些酶已经报道了许多不同的生物催化应用。特定序列基序的最新表征促进了公共数据库中可用的新型卤代醇脱卤酶序列的鉴定,并大大增加了重组可用酶的数量。这些将有助于扩展该酶家族的生物催化功能,并促进未来新的生物技术应用和发展。这篇综述给出了卤代醇脱卤酶的家族及其生化特性的一般概述,并进一步关注了卤代醇脱卤酶的生物催化和蛋白质工程的最新进展。

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