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dc.contributor.authorAndreo-Vidal, Andres-
dc.contributor.authorMamounis, Kyle J.-
dc.contributor.authorSehanobish, Esha-
dc.contributor.authorAvalos, Dante-
dc.contributor.authorCampillo-Brocal, Jonatan C.-
dc.contributor.authorSanchez-Amat, Antonio-
dc.contributor.authorYukl, Erik T.-
dc.contributor.authorDavidson, Victor L.-
dc.contributor.otherFacultades, Departamentos, Servicios y Escuelas::Departamentos de la UMU::Genética y Microbiologíaes
dc.date.accessioned2024-02-08T11:35:51Z-
dc.date.available2024-02-08T11:35:51Z-
dc.date.issued2018-
dc.identifier.citationBiochemistry 2018, 57(7), 1155-1165es
dc.identifier.issnPrint: 0006-2960-
dc.identifier.issnElectronic: 1520-4995-
dc.identifier.urihttp://hdl.handle.net/10201/138985-
dc.descriptionCopyright © 2018 American Chemical Societyes
dc.description©<2018>. This manuscript version is made available under the CC-BY-NC 4.0 license http://creativecommons.org/licenses/by-nc-nd/4.0/ This document is the, Accepted, version of a Published Work that appeared in final form in Biochemistry. To access the final edited and published work see: https://doi.org/ 10.1021/acs.biochem.8b00009.-
dc.description.abstractGlycine oxidase from Pseudoalteromonas luteoviolacea (PlGoxA) is a cysteine tryptophylquinone (CTQ)-dependent enzyme. Sequence and phylogenetic analysis place it in a newly designated subgroup (Group IID) of a recently identified family of LodA-like proteins, which are predicted to possess CTQ. The crystal structure of PlGoxA reveals that it is a homo-tetramer. It possesses an N-terminal domain with no close structural homologues in the Protein Data Bank. The active site is quite small due to intersubunit interactions, which may account for the observed cooperativy towards glycine. Steady-state kinetic analysis yielded values of kcat=6.0±0.2 s−1, K0.5=187±18 μM and h=1.77±0.27. In contrast to other quinoprotein amine dehydrogenases and oxidases that exhibit anomalously large primary kinetic isotope effects on the rate of reduction of the quinone cofactor by the amine substrate, no significant primary kinetic isotope effect was observed for this reaction of PlGoxA. The absorbance spectrum of the glycine-reduced PlGoxA exhibits features in the 400-650 nm range that have not previously been seen in other quinoproteins. Thus, in addition to the unusual structural features of PlGoxA, the kinetic and chemical reaction mechanisms of the reductive half-reaction of PlGoxA appear to be distinct from those of other amine dehydrogenases and amine oxidases that use tryptophylquinone and tyrosylquinone cofactors.es
dc.formatapplication/pdfes
dc.format.extent28es
dc.languageenges
dc.publisherACS Publicationses
dc.relationThis research was supported by the National Institute of General Medical Sciences of the National Institutes of Health under award number R37GM41574es
dc.rightsinfo:eu-repo/semantics/openAccesses
dc.rightsAttribution-NonCommercial-NoDerivatives 4.0 Internacional*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/*
dc.subjectAmineses
dc.subjectGenomicses
dc.subjectMonomerses
dc.subjectPeptides and proteinses
dc.subjectRedox reactionses
dc.subject.otherCDU::5 - Ciencias puras y naturales::57 - Biología::579 - Microbiologíaes
dc.titleStructure and Enzymatic Properties of an Unusual Cysteine Tryptophylquinone-Dependent Glycine Oxidase from Pseudoalteromonas luteoviolaceaes
dc.typeinfo:eu-repo/semantics/articlees
dc.identifier.doihttps://doi.org/10.1021/acs.biochem.8b00009-
Aparece en las colecciones:Artículos: Genética y Microbiología

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