Assessing electron transfer reactions and catalysis in multicopper oxidases with operando X-ray absorption spectroscopy

Исследование реакций переноса электронов и катализа в мультикупферных оксидазах методом in operando рентгеновской абсорбционной спектроскопии
Frank N. Crespilho, Lucyano J. A. Macedo, Ayaz Hassan, Graziela C. Sedenho
2020-01-16

bilirubin oxidaseelectron transfermulticopper oxidasesoperando X-ray absorption spectroscopyoxygen reduction reaction
Here we propose an experimental setup based on operando X-ray absorption spectroscopy (XAS) to understand why copper-containing oxidoreductase enzymes show exceptional performance as catalysts for the oxygen reduction reaction (ORR). An electrode based on carbon nanoparticles organized in mesoporous structures with bilirubin oxidase (BOD) was developed to be used in a home-made operando XAS electrochemical cell, and we probed the electron transfer under ORR regime. In the presence of molecular oxygen, the BOD cofactor containing 4 copper ions require an overpotential about 150 mV to be reduced as compared to that in the absence of oxygen. A second electron transfer step, which occurs faster than the cofactor reduction, suggests that the cooper ions act as a tridimensional redox active electronic bridges for the electron transfer reaction.
1
A mesoporous carbon-nanoparticle electrode incorporating bilirubin oxidase was integrated into a custom operando electrochemical XAS cell.
2
A second electron-transfer step occurred faster than cofactor reduction, indicating that the copper ions function as three-dimensional redox-active electronic bridges.
3
An operando X-ray absorption spectroscopy setup was developed to investigate electron transfer and catalysis in multicopper oxidases during oxygen reduction.
4
The findings provide mechanistic insight into the exceptional oxygen-reduction catalytic performance of copper-containing oxidoreductases.
5
Under oxygen reduction conditions, the bilirubin oxidase four-copper cofactor required approximately 150 mV overpotential for reduction compared with oxygen-free conditions.

bilirubin oxidase (BOD) multicopper oxidase cofactor containing four copper ions under oxygen reduction reaction (ORR) conditions

electron-transfer kinetics and catalytic redox behavior of the multicopper cofactor during the oxygen reduction reaction, including its role as a three-dimensional redox-active electronic bridge

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2020-01-16
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Authors
Frank N. Crespilho
Lucyano J. A. Macedo
Ayaz Hassan
Graziela C. Sedenho
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