Electrochemical redox transformations of T1 and T2 copper sites in nativeTrametes hirsutalaccase at gold electrode

Электрохимические окислительно-восстановительные превращения медных центров T1 и T2 нативной лакказы Trametes hirsuta на золотом электроде
Lo Gorton, В. А. Сереженков, Sergey Shleev, Dosymzhan Sh. Burbaev, Andreas Christenson, Tautgirdas Ruzgas, A. I. Yaropolov
2005-01-24

T1 and T2 copper sitesTrametes hirsuta laccasecyclic voltammetrydirect electron transferredox potential
Mediatorless, electrochemically driven, redox transformations of T1 (type 1) and T2 copper sites in Trametes hirsuta laccase were studied by cyclic voltammetry and spectroelectrochemical redox titrations using bare gold electrode. DET (direct electron transfer) between the electrode and the enzyme was observed under anaerobic conditions. From analysis of experimental data it is concluded that the T2 copper site is in DET contact with gold. It was found that electron transfer between the gold surface and the T1 copper site progresses through the T2 copper site. From EPR measurements and electrochemical data it is proposed that the redox potential of the T2 site for high-potential 'blue' laccase is equal to about 400 mV versus NHE (normal hydrogen electrode) at pH 6.5. The hypothesis that the redox potentials of the T2 copper sites in low- and high-potential laccases/oxidases from totally different sources might be very similar, i.e. approx. 400 mV, is discussed.
1
Electrochemical analysis indicates that the laccase T2 copper site is in direct electron-transfer contact with the gold electrode.
2
Electron transfer between the gold electrode and the T1 copper site proceeds through the T2 copper site.
3
Mediatorless direct electron transfer between native Trametes hirsuta laccase and a bare gold electrode was observed under anaerobic conditions.
4
The T2 copper redox potential in high-potential blue laccase is estimated at approximately 400 mV versus NHE at pH 6.5.
5
The findings support discussion of potentially similar T2 copper redox potentials, around 400 mV, across low- and high-potential laccases or oxidases from different sources.

T1 and T2 copper sites in native Trametes hirsuta laccase at a gold electrode

Electrochemically driven redox transformations and electron-transfer pathways between the copper sites and the gold electrode, including the redox potential of the T2 site

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2005-01-24
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Authors
Lo Gorton
В. А. Сереженков
Sergey Shleev
Dosymzhan Sh. Burbaev
Andreas Christenson
Tautgirdas Ruzgas
A. I. Yaropolov
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