A New L-Proline Amide Hydrolase with Potential Application within the Amidase Process
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Martínez Rodríguez, Sergio; Contreras Montoya, Rafael; Torres De Pinedo, Jesús Manuel; Álvarez Cienfuegos Rodríguez, Luis; Gavira Gallardo, José AntonioEditorial
MDPI
Materia
Amidase Amino acid Amidase process Proline Aminopeptidase S33 family
Date
2021-12-23Referencia bibliográfica
Martinez-Rodríguez, S... [et al.]. A New L-Proline Amide Hydrolase with Potential Application within the Amidase Process. Crystals 2022, 12, 18. [https://doi.org/10.3390/cryst12010018]
Sponsorship
Spanish Government; European Commission PID2020-116261GB-I00/AEI/10.13039/501100011033; FEDER/Junta de Andalucia-Consejeria de Transformacion Economica, Industria, Conocimiento y Universidades P18-FR-3533 P12-FQM-790; University of Granada PPJI2017-1 CTS-202Abstract
L-proline amide hydrolase (PAH, EC 3.5.1.101) is a barely described enzyme belonging to the peptidase S33 family, and is highly similar to prolyl aminopeptidases (PAP, EC. 3.4.11.5). Besides being an S-stereoselective character towards piperidine-based carboxamides, this enzyme also hydrolyses different L-amino acid amides, turning it into a potential biocatalyst within the Amidase Process. In this work, we report the characterization of L-proline amide hydrolase from Pseudomonas syringae (PsyPAH) together with the first X-ray structure for this class of L-amino acid amidases. Recombinant PsyPAH showed optimal conditions at pH 7.0 and 35 degrees C, with an apparent thermal melting temperature of 46 degrees C. The enzyme behaved as a monomer at the optimal pH. The L-enantioselective hydrolytic activity towards different canonical and non-canonical amino-acid amides was confirmed. Structural analysis suggests key residues in the enzymatic activity.