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Biocatalytic asymmetric synthesis of L-phosphinothricin using a one-pot three enzyme system and a continuous substrate fed-batch strategy

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논문

Biocatalytic asymmetric synthesis of L-phosphinothricin using a one-pot three enzyme system and a continuous substrate fed-batch strategy

학술지

Applied catalysis. A, General

저자명

Zhou, Haisheng; Meng, Lijun; Yin, Xinjian; Liu, Yayun; Wu, Jianping; Xu, Gang; Wu, Mianbin; Yang, Lirong

초록

<P><B>Abstract</B></P> <P>Transamination catalyzed by an aminotransferase is becoming a key tool for the production of chiral amine pharmaceuticals and agrochemicals owing to its excellent enantioselectivity and green credentials. To overcome the unfavorable thermodynamic equilibrium and the inhibition by the byproduct &alpha;-ketoglutaric acid in the transamination of 2-oxo-4-[(hydroxy)(methyl)phosphinoyl]butyric acid (PPO) to form the promising herbicide <SMALL>L</SMALL>-phosphinothricin (L-PPT), a tri-enzymatic cascade reaction system was developed by combining a robust glutamate dehydrogenase to recycle the byproduct to the amino donor L-glutamate <I>in situ</I>, together with a cofactor recycling process catalyzed by an alcohol dehydrogenase. Moreover, a continuous substrate fed-batch strategy was employed to alleviate the decomposition of PPO and applied to scale-up the cascade reaction to 90 L, yielding 111.4 g/L (615.4 mM) L-PPT in 99.7% yield and >99.9% ee with an productivity of 15.9 g/L&bull;h. This combination of improved biocatalyst system and process engineering should prove to be economically competitive for industrial applications.</P> <P><B>Highlights</B></P> <P> <UL> <LI> A three-enzyme cascade reaction was developed for synthesis of L-phosphinothricin. </LI> <LI> A continuous substrate fed-batch process was used to scale-up the reaction to 90 L. </LI> <LI> 615.4 mM L-Phosphinothricin was produced in 99.7% yield and >99.9% ee. </LI> <LI> The method could be used for asymmetric synthesis of non-proteinogenic amino acids. </LI> </UL> </P> <P><B>Graphical abstract</B></P> <P>[DISPLAY OMISSION]</P>

발행연도

2020

발행기관

Elsevier

ISSN

0926-860x

ISSN

1873-3875

589

페이지

pp.117239

주제어

Asymmetric synthesis; Aminotransferase; Continuous substrate fed-batch; Enzymatic catalyze; Herbicide; L-Phosphinothricin

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1 2023-12-11

논문; 2020-01-01

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