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Título: Structural Determinants of the Specific Activities of an L-Amino Acid Oxidase from Pseudoalteromonas luteoviolacea CPMOR-1 with Broad Substrate Specificity
Fecha de publicación: 24-jul-2022
Editorial: MDPI
Cita bibliográfica: Molecules 27(15):4726 (2022)
ISSN: 1420-3049
Materias relacionadas: CDU::5 - Ciencias puras y naturales::57 - Biología::579 - Microbiología
CDU::5 - Ciencias puras y naturales::57 - Biología::577 - Bioquímica. Biología molecular. Biofísica
Palabras clave: Enzima
Flavoproteína
Peróxido de Hidrógeno
Pseudoalteromonas
Estructura-Función
Resumen: The Pseudoalteromonas luteoviolacea strain CPMOR-1 expresses a flavin adenine dinucleotide (FAD)-dependent L-amino acid oxidase (LAAO) with broad substrate specificity. Steady-state kinetic analysis of its reactivity towards the 20 proteinogenic amino acids showed some activity to all except proline. The relative specific activity for amino acid substrates was not correlated only with Km or kcat values, since the two parameters often varied independently of each other. Variation in Km was attributed to the differential binding affinity. Variation in kcat was attributed to differential positioning of the bound substrate relative to FAD that decreased the reaction rate. A structural model of this LAAO was compared with structures of other FAD-dependent LAAOs that have different substrate specificities: an LAAO from snake venom that prefers aromatic amino acid substrates and a fungal LAAO that is specific for lysine. While the amino acid sequences of these LAAOs are not very similar, their overall structures are comparable. The differential activity towards specific amino acids was correlated with specific residues in the active sites of these LAAOs. Residues in the active site that interact with the amino and carboxyl groups attached to the α-carbon of the substrate amino acid are conserved in all of the LAAOs. Residues that interact with the side chains of the amino acid substrates show variation. This provides insight into the structural determinants of the LAAOs that dictate their different substrate preferences. These results are of interest for harnessing these enzymes for possible applications in biotechnology, such as deracemization.
Autor/es principal/es: Mamounis, Kyle J.
Caldas Nogueira, Maria Luiza
Marchi Salvador, Daniela Priscila
Andreo-Vidal, Andrés
Sanchez-Amat, Antonio
Davidson, Victor L.
Facultad/Departamentos/Servicios: Facultades, Departamentos, Servicios y Escuelas::Departamentos de la UMU::Genética y Microbiología
Versión del editor: https://www.mdpi.com/1420-3049/27/15/4726
URI: http://hdl.handle.net/10201/148443
DOI: https://doi.org/10.3390/molecules27154726
Tipo de documento: info:eu-repo/semantics/article
Número páginas / Extensión: 17
Derechos: info:eu-repo/semantics/openAccess
Descripción: © 2022 Authors This document is the published version of a published work that appeared in final form in Molecules This document is made available under the CC-BY 4.0 license http://creativecommons.org/licenses/by/4.0 To access the final edited and published work see: https://doi.org/10.3390/molecules27154726
Aparece en las colecciones:Artículos: Genética y Microbiología

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