Direct electrochemistry of the Desulfovibrio gigas aldehyde oxidoreductase


Autoria(s): Moura, Isabel; Santos, Margarida M. Correia dos; Sousa, Patrícia M. P.; Gonçalves, M. Lurdes S.; Romão, M. João; Moura, José J. G.
Data(s)

23/09/2008

23/09/2008

2004

Resumo

Eur. J. Biochem. 271, 1329–1338 (2004)

This work reports on the direct electrochemistry of the Desulfovibrio gigas aldehyde oxidoreductase (DgAOR), a molybdenum enzyme of the xanthine oxidase family that contains three redox-active cofactors: two [2Fe-2S] centers and a molybdopterin cytosine dinucleotide cofactor. The voltammetric behavior of the enzyme was analyzed at gold and carbon (pyrolytic graphite and glassy carbon) electrodes. Two different strategies were used: one with the molecules confined to the electrode surface and a second with DgAOR in solution. In all of the cases studied, electron transfer took place, although different redox reactions were responsible for the voltammetric signal. From a thorough analysis of the voltammetric responses and the structural properties of the molecular surface of DgAOR, the redox reaction at the carbon electrodes could be assigned to the reduction of the more exposed iron cluster, [2Fe-2S] II, whereas reduction of the molybdopterin cofactor occurs at the gold electrode. Voltammetric results in the presence of aldehydes are also reported and discussed.

Identificador

00142956

http://hdl.handle.net/10362/1656

Idioma(s)

eng

Publicador

Blackwell Publishing

Direitos

openAccess

Palavras-Chave #Aldehyde oxidoreductase #Desulfovibrio gigas #Electrochemistry
Tipo

article