Asymmetric Synthesis of Enantiomerically Pure Aliphatic and Aromatic D-Amino Acids Catalyzed by Transaminase from Haliscomenobacter hydrossis

Author:

Bakunova Alina K.,Isaikina Tatiana Y.,Popov Vladimir O.,Bezsudnova Ekaterina Yu.ORCID

Abstract

D-amino acids are valuable building blocks for the synthesis of biologically active compounds and pharmaceuticals. The asymmetric synthesis of chiral amino acids from prochiral ketones using stereoselective enzymes is a well-known but far from exhausted approach for large-scale production. Herein, we investigated a pyridoxal-5′-phosphate-dependent D-amino acid transaminase from Haliscomenobacter hydrossis as a potential biocatalyst for the enzymatic asymmetric synthesis of optically pure aliphatic and aromatic D-amino acids. We studied the catalytic efficiency and stereoselectivity of transaminase from H. hydrossis in the amination of aliphatic and aromatic α-keto acids, using D-glutamate as a source of the amino group. We constructed a one-pot three-enzyme system, which included transaminase and two auxiliary enzymes, hydroxyglutarate dehydrogenase, and glucose dehydrogenase, to produce D-amino acids with a product yield of 95–99% and an enantiomeric excess of more than 99%. We estimated the stability of the transaminase and the cofactor leakage under reaction conditions. It was found that a high concentration of α-keto acids as well as a low reaction temperature (30 °C) can reduce the cofactor leakage under reaction conditions. The obtained results demonstrated the efficiency of transaminase from H. hydrossis in the asymmetric synthesis of enantiomerically pure D-amino acids.

Funder

Russian Science Foundation

Ministry of Science and Higher Education of the Russian Federation

Publisher

MDPI AG

Subject

Physical and Theoretical Chemistry,Catalysis,General Environmental Science

Reference39 articles.

1. Biocatalysis;Bell;Nat. Rev. Methods Prim.,2021

2. Power of Biocatalysis for Organic Synthesis;Winkler;ACS Cent. Sci.,2021

3. Biocatalysis: Enzymatic Synthesis for Industrial Applications;Wu;Angew. Chem. Int. Ed.,2021

4. The Fourth Wave of Biocatalysis Is Approaching;Bornscheuer;Philos. Trans. R. Soc. A Math. Phys. Eng. Sci.,2018

5. Biocatalytic Synthesis of Chiral Alcohols and Amino Acids for Development of Pharmaceuticals;Patel;Biomolecules,2013

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