Por favor, use este identificador para citar o enlazar a este item: http://hdl.handle.net/10261/96224
COMPARTIR / EXPORTAR:
logo OpenAIRE logo OpenAIRE logo core CORE BASE
Visualizar otros formatos: MARC | Dublin Core | RDF | ORE | MODS | METS | DIDL | DATACITE
logo citeas Hervás, M., López-Maury, L., León, P., Sánchez-Riego, A. M., Florencio, F. J., & Navarro, J. A. (2012, February 3). ArsH from the CyanobacteriumSynechocystissp. PCC 6803 Is an Efficient NADPH-Dependent Quinone Reductase. Biochemistry. American Chemical Society (ACS). http://doi.org/10.1021/bi201904p
Invitar a revisión por pares abierta logo European Open Science Cloud - EU Node   

Título

ArsH from the cyanobacterium Synechocystis sp. PCC 6803 is an efficient NADPH-dependent quinone reductase

AutorHervás, Manuel CSIC ORCID; López-Maury, Luis CSIC ORCID ; León, Pilar CSIC; Sánchez-Riego, Ana María CSIC; Florencio, Francisco J.; Navarro, José A.
Fecha de publicación2012
EditorAmerican Chemical Society
CitaciónBiochemistry 51: 1178- 1187 (2012)
ResumenThe cyanobacterium Synechocystis sp. PCC 6803 possesses an arsenic resistance operon that encodes, among others, an ArsH protein. ArsH is a flavin mononucleotide (FMN)-containing protein of unknown function and a member of the family of NADPH-dependent FMN reductases. The nature of its final electron acceptor and the role of ArsH in the resistance to arsenic remained to be clarified. Here we have expressed and purified Synechocystis ArsH and conducted an intensive biochemical study. We present kinetic evidence supporting a quinone reductase activity for ArsH, with a preference for quinones with hydrophobic substituents. By using steady-state activity measurements, as well as stopped-flow and laser-flash photolysis kinetic analyses, it has been possible to establish the mechanism of the process and estimate the values of the kinetic constants. Although the enzyme is able to stabilize the anionic semiquinone form of the FMN, reduction of quinones involves the hydroquinone form of the flavin cofactor, and the enzymatic reaction occurs through a ping-pong-type mechanism. ArsH is able to catalyze one-electron reactions (oxygen and cytocrome c reduction), involving the FMN semiquinone form, but with lower efficiency. In addition, arsH mutants are sensitive to the oxidizing agent menadione, suggesting that ArsH plays a role in the response to oxidative stress caused by arsenite. © 2012 American Chemical Society.
URIhttp://hdl.handle.net/10261/96224
DOI10.1021/bi201904p
Identificadoresdoi: 10.1021/bi201904p
issn: 0006-2960
Aparece en las colecciones: (IBVF) Artículos



Ficheros en este ítem:
Fichero Descripción Tamaño Formato
accesoRestringido.pdf15,38 kBAdobe PDFVista previa
Visualizar/Abrir
Mostrar el registro completo

CORE Recommender

SCOPUSTM   
Citations

40
checked on 19-nov-2024

WEB OF SCIENCETM
Citations

31
checked on 23-feb-2024

Page view(s)

396
checked on 07-jul-2025

Download(s)

155
checked on 07-jul-2025

Google ScholarTM

Check

Altmetric

Altmetric



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