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Development of an aminotransferase-driven biocatalytic cascade for deracemization of d,l-phosphinothricin.

Authors :
Liu HL
Wu JM
Deng XT
Yu L
Yi PH
Liu ZQ
Xue YP
Jin LQ
Zheng YG
Source :
Biotechnology and bioengineering [Biotechnol Bioeng] 2023 Oct; Vol. 120 (10), pp. 2940-2952. Date of Electronic Publication: 2023 May 25.
Publication Year :
2023

Abstract

2-oxo-4-[(hydroxy)(methyl)phosphinoyl]butyric acid (PPO) is the essential precursor keto acid for the asymmetric biosynthesis of herbicide l-phosphinothricin (l-PPT). Developing a biocatalytic cascade for PPO production with high efficiency and low cost is highly desired. Herein, a d-amino acid aminotransferase from Bacillus sp. YM-1 (Ym DAAT) with high activity (48.95 U/mg) and affinity (K <subscript>m</subscript>  = 27.49 mM) toward d-PPT was evaluated. To circumvent the inhibition of by-product d-glutamate (d-Glu), an amino acceptor (α-ketoglutarate) regeneration cascade was constructed as a recombinant Escherichia coli (E. coli D), by coupling Ym d-AAT, d-aspartate oxidase from Thermomyces dupontii (TdDDO) and catalase from Geobacillus sp. CHB1. Moreover, the regulation of the ribosome binding site was employed to overcome the limiting step of expression toxic protein TdDDO in E. coli BL21(DE3). The aminotransferase-driven whole-cell biocatalytic cascade (E. coli D) showed superior catalytic efficiency for the synthesis of PPO from d,l-phosphinothricin (d,l-PPT). It revealed the production of PPO exhibited high space-time yield (2.59 g L <superscript>-1</superscript>  h <superscript>-1</superscript> ) with complete conversion of d-PPT to PPO at high substrate concentration (600 mM d,l-PPT) in 1.5 L reaction system. This study first provides the synthesis of PPO from d,l-PPT employing an aminotransferase-driven biocatalytic cascade.<br /> (© 2023 Wiley Periodicals LLC.)

Details

Language :
English
ISSN :
1097-0290
Volume :
120
Issue :
10
Database :
MEDLINE
Journal :
Biotechnology and bioengineering
Publication Type :
Academic Journal
Accession number :
37227020
Full Text :
https://doi.org/10.1002/bit.28432