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Combining Aldolases and Transaminases for the Synthesis of 2-Amino-4-hydroxybutanoic Acid
Author(s) -
Karel Hernández,
Jordi Bujons,
Jesús Joglar,
Simon J. Charnock,
Pablo Domı́nguez de Marı́a,
Wolf Dieter Fessner,
Pere Clapés
Publication year - 2017
Publication title -
acs catalysis
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.898
H-Index - 198
ISSN - 2155-5435
DOI - 10.1021/acscatal.6b03181
Subject(s) - transamination , aldolase a , chemistry , aldol reaction , biocatalysis , stereoselectivity , transaminase , enantioselective synthesis , cascade reaction , amino acid , formaldehyde , stereochemistry , fructose bisphosphate aldolase , catalysis , organic chemistry , enzyme , biochemistry , reaction mechanism
Amino acids are of paramount importance as chiral building blocks of life, for drug development in modern medicinal chemistry, and for the manufacture of industrial products. In this work, the stereoselective synthesis of (S)- and (R)-2-amino-4-hydroxybutanoic acid was accomplished using a systems biocatalysis approach comprising a biocatalytic one-pot cyclic cascade by coupling of an aldol reaction with an ensuing stereoselective transamination. A class II pyruvate aldolase from E. coli, expressed as a soluble fusion protein, in tandem with either an S- or R-selective, pyridoxal phosphate dependent transaminase was used as a catalyst to realize the conversion, with formaldehyde and alanine being the sole starting materials. Interestingly, the class II pyruvate aldolase was found to tolerate formaldehyde concentrations of up to 1.4 M. The cascade system was found to reach product concentrations for (S)- or (R)-2-amino-4-hydroxybutanoic acid of at least 0.4 M, rendering yields between 86% and >95%, respectively, productivities of >80 g L–1 d–1, and ee values of >99%.This project has received funding from the European Union’s\udHorizon 2020 research and innovation programme under grant\udagreement no. 635595 (CarbaZymes), the Ministerio de\udEconomía y Competitividad (MINECO), the Fondo Europeo de Desarrollo Regional (FEDER) (grant no. CTQ2015-63563-R to P.C.), and COST action CM1303 Systems Biocatalysis.Peer reviewe

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