Por favor, use este identificador para citar o enlazar este ítem: https://doi.org/10.1016/j.abb.2019.108110

Título: Characterization of PlGoxB, a flavoprotein required for cysteine tryptophylquinone biosynthesis in glycine oxidase from Pseudoalteromonas luteoviolacea
Fecha de publicación: 17-sep-2019
Editorial: Elsevier BV
Cita bibliográfica: Archives of Biochemistry and Biophysics 674:108110 (2019).
ISSN: 1096-0384
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: Pseudoalteromonas
PlGoxB
Flavoprotein
Cysteine tryptophylquinone
Resumen: LodA-like proteins are oxidases with a protein-derived cysteine tryptophylquinone (CTQ) prosthetic group. In Pseudoalteromonas luteoviolacea glycine oxidase (PlGoxA), CTQ biosynthesis requires post-translational modifications catalyzed by a modifying enzyme encoded by PlgoxB. The PlGoxB protein was expressed and shown to possess a flavin cofactor. PlGoxB was unstable in solution as it readily lost the flavin and precipitated. PlGoxB precipitation was significantly reduced by incubation with either excess FAD or an equal concentration of prePlGoxA, the precursor protein that is its substrate. In contrast, the mature CTQ-bearing PlGoxA had no stabilizing effect. A homology model of PlGoxB was generated using the structure of Alkylhalidase CmIS. The FAD-binding site of PlGoxB in the model was nearly identical to that of the template structure. The bound FAD in PlGoxB had significant solvent exposure, consistent with the observed tendency to lose FAD. This also suggested that interaction of prePlGoxA with PlGoxB at the exposed FAD-binding site could prevent the observed loss of FAD and subsequent precipitation of PlGoxB. A docking model of the putative PlGoxB-prePlGoxA complex was consistent with these hypotheses. The experimental results and computational analysis implicate structural features of PlGoxB that contribute to its stability and function.
Autor/es principal/es: Mamounis, Kyle J.
Ma, Zhongxin
Sanchez-Amat, Antonio
Davidson, Victor L.
Versión del editor: https://www.sciencedirect.com/science/article/abs/pii/S0003986119305934
URI: http://hdl.handle.net/10201/148444
DOI: https://doi.org/10.1016/j.abb.2019.108110
Tipo de documento: info:eu-repo/semantics/article
Número páginas / Extensión: 7
Derechos: info:eu-repo/semantics/embargoedAccess
Descripción: © 2019 Elsevier Inc This document is the published version of a published work that appeared in final form in Archives of Biochemistry and Biophysics (ABB) To access the final edited and published work see: https://doi.org/10.1016/j.abb.2019.108110
Aparece en las colecciones:Artículos

Ficheros en este ítem:
Fichero Descripción TamañoFormato 
Mamounis 2019_PlGoxB_Pseudoalteromonas.pdfArtículo completo1,47 MBAdobe PDFVista previa
Visualizar/Abrir    Solicitar una copia


Los ítems de Digitum están protegidos por copyright, con todos los derechos reservados, a menos que se indique lo contrario.