Literature DB >> 32064550

Fluorescence-based high-throughput screening system for R-ω-transaminase engineering and its substrate scope extension.

Feng Cheng1,2, Xiu-Ling Chen1,2, Chao Xiang1,2, Zhi-Qiang Liu1,2, Ya-Jun Wang3,4, Yu-Guo Zheng1,2.   

Abstract

ω-Transaminase (ω-TA) is an attractive alternative to metal catalysts for the stereoselective amination of prochiral ketones. The narrow substrate scope of an R-ω-transaminase from Mycobacterium vanbaalenii (MvTA) limits its application in R-amine synthesis. A fluorescence-based TA activity screening system was developed to extend its substrate scope. The reactions were conducted in microtiter plates (MTPs) and displayed low background interference, high sensitivity (μM magnitude), and a wide dynamic range (ɀ-factor > 0.9). A KnowVolution campaign was performed on this enzyme, and screening ~ 8000 clones with this fluorescence-based screening system resulted in two beneficial substitutions (G68Y and F129A) and three improved variants (M3, M4, and M5). The best variant, MvTA M5 (WT+G68Y+F129A), achieved the highest catalytic efficiency (toward fluorogenic substrate NMA) which was 3.2-fold higher than that of the WT enzyme. MvTA M5 exhibited significantly enhanced activity toward six different prochiral ketones with e.e. > 99% (R). The specific activity of MvTA M5 was more than 100 times higher than that of the WT enzyme toward acetonaphthone (M5: 8.1 U/mg, WT: ~ 0.07 U/mg), and it showed the highest activity on acetonaphthone, p-ethylacetophenone, and phenylacetone.

Entities:  

Keywords:  Chiral amine; Directed evolution; High-throughput screening; ω-Transaminase

Year:  2020        PMID: 32064550     DOI: 10.1007/s00253-020-10444-y

Source DB:  PubMed          Journal:  Appl Microbiol Biotechnol        ISSN: 0175-7598            Impact factor:   4.813


  5 in total

1.  Simultaneous directed evolution of coupled enzymes for efficient asymmetric synthesis of l-phosphinothricin.

Authors:  Feng Cheng; Qing-Hua Li; Hua-Yue Zhang; Lan Wei; Jia-Min Zhang; Ju-Mou Li; Ya-Ping Xue; Yu-Guo Zheng
Journal:  Appl Environ Microbiol       Date:  2020-12-11       Impact factor: 4.792

2.  Kinetics of enzyme-catalysed desymmetrisation of prochiral substrates: product enantiomeric excess is not always constant.

Authors:  Peter J Halling
Journal:  Beilstein J Org Chem       Date:  2021-04-21       Impact factor: 2.883

3.  Non-Canonical Amino Acid-Based Engineering of (R)-Amine Transaminase.

Authors:  Amol D Pagar; Hyunwoo Jeon; Taresh P Khobragade; Sharad Sarak; Pritam Giri; Seonga Lim; Tae Hyeon Yoo; Byoung Joon Ko; Hyungdon Yun
Journal:  Front Chem       Date:  2022-02-28       Impact factor: 5.221

4.  Identification, Characterization, and Site-Specific Mutagenesis of a Thermostable ω-Transaminase from Chloroflexi bacterium.

Authors:  Chen Wang; Kexin Tang; Ya Dai; Honghua Jia; Yan Li; Zhen Gao; Bin Wu
Journal:  ACS Omega       Date:  2021-06-25

5.  Active-site engineering of ω-transaminase from Ochrobactrum anthropi for preparation of L-2-aminobutyric acid.

Authors:  Zhiwei Zhang; Yang Liu; Jing Zhao; Wenqiang Li; Ruiwen Hu; Xia Li; Aitao Li; Yaping Wang; Lixin Ma
Journal:  BMC Biotechnol       Date:  2021-09-25       Impact factor: 2.563

  5 in total

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