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体内即插即用:一种用于酮酸和酮不对称胺化的模块化多酶单细胞催化剂。

In vivo plug-and-play: a modular multi-enzyme single-cell catalyst for the asymmetric amination of ketoacids and ketones.

作者信息

Farnberger Judith E, Lorenz Elisabeth, Richter Nina, Wendisch Volker F, Kroutil Wolfgang

机构信息

Austrian Centre of Industrial Biotechnology, ACIB GmbH, c/o University of Graz, Heinrichstrasse 28, 8010, Graz, Austria.

Genetics of Prokaryotes, Faculty of Biology & CeBiTec, Bielefeld University, 33501, Bielefeld, Germany.

出版信息

Microb Cell Fact. 2017 Jul 28;16(1):132. doi: 10.1186/s12934-017-0750-5.

Abstract

BACKGROUND

Transaminases have become a key tool in biocatalysis to introduce the amine functionality into a range of molecules like prochiral α-ketoacids and ketones. However, due to the necessity of shifting the equilibrium towards the product side (depending on the amine donor) an efficient amination system may require three enzymes. So far, this well-established transformation has mainly been performed in vitro by assembling all biocatalysts individually, which comes along with elaborate and costly preparation steps. We present the design and characterization of a flexible approach enabling a quick set-up of single-cell biocatalysts producing the desired enzymes. By choosing an appropriate co-expression strategy, a modular system was obtained, allowing for flexible plug-and-play combination of enzymes chosen from the toolbox of available transaminases and/or recycling enzymes tailored for the desired application.

RESULTS

By using a two-plasmid strategy for the recycling enzyme and the transaminase together with chromosomal integration of an amino acid dehydrogenase, two enzyme modules could individually be selected and combined with specifically tailored E. coli strains. Various plug-and-play combinations of the enzymes led to the construction of a series of single-cell catalysts suitable for the amination of various types of substrates. On the one hand the fermentative amination of α-ketoacids coupled both with metabolic and non-metabolic cofactor regeneration was studied, giving access to the corresponding α-amino acids in up to 96% conversion. On the other hand, biocatalysts were employed in a non-metabolic, "in vitro-type" asymmetric reductive amination of the prochiral ketone 4-phenyl-2-butanone, yielding the amine in good conversion (77%) and excellent stereoselectivity (ee = 98%).

CONCLUSIONS

The described modularized concept enables the construction of tailored single-cell catalysts which provide all required enzymes for asymmetric reductive amination in a flexible fashion, representing a more efficient approach for the production of chiral amines and amino acids.

摘要

背景

转氨酶已成为生物催化中的一种关键工具,可将胺官能团引入一系列分子中,如前手性α-酮酸和酮。然而,由于需要将平衡向产物方向移动(取决于胺供体),一个高效的胺化系统可能需要三种酶。到目前为止,这种成熟的转化主要是在体外通过单独组装所有生物催化剂来进行的,这伴随着复杂且昂贵的制备步骤。我们展示了一种灵活方法的设计和表征,该方法能够快速构建产生所需酶的单细胞生物催化剂。通过选择合适的共表达策略,获得了一个模块化系统,允许从可用转氨酶和/或为所需应用量身定制的循环酶工具箱中灵活地即插即用组合酶。

结果

通过使用两质粒策略用于循环酶和转氨酶,同时将氨基酸脱氢酶进行染色体整合,可以分别选择两个酶模块,并与经过特殊定制的大肠杆菌菌株组合。酶的各种即插即用组合导致构建了一系列适用于各种类型底物胺化的单细胞催化剂。一方面,研究了α-酮酸的发酵胺化与代谢和非代谢辅因子再生的耦合,可实现高达96%转化率的相应α-氨基酸的合成。另一方面,生物催化剂用于前手性酮4-苯基-2-丁酮的非代谢“体外型”不对称还原胺化反应,胺的转化率良好(77%),立体选择性优异(对映体过量值ee = 98%)。

结论

所描述的模块化概念能够构建定制的单细胞催化剂,这些催化剂以灵活的方式提供不对称还原胺化所需的所有酶,代表了一种生产手性胺和氨基酸的更有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b5f/5534079/980666ae20c1/12934_2017_750_Fig1_HTML.jpg

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