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Active-site structure, binding and redox activity of the heme–thiolate enzyme CYP2D6 immobilized on coated Ag electrodes: a surface-enhanced resonance Raman scattering study

Surface-enhance resonance Raman scattering spectra of the heme–thiolate enzyme cytochrome P450 2D6 (CYP2D6) adsorbed on Ag electrodes coated with 11-mercaptoundecanoic acid (MUA) were obtained in various experimental conditions. An analysis of these spectra, and a comparison between them and the RR...

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Autores principales: Bonifacio, Alois, Millo, Diego, Keizers, Peter H. J., Boegschoten, Roald, Commandeur, Jan N. M., Vermeulen, Nico P. E., Gooijer, Cees, van der Zwan, Gert
Formato: Texto
Lenguaje:English
Publicado: Springer-Verlag 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2099460/
https://www.ncbi.nlm.nih.gov/pubmed/17899220
http://dx.doi.org/10.1007/s00775-007-0303-1
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author Bonifacio, Alois
Millo, Diego
Keizers, Peter H. J.
Boegschoten, Roald
Commandeur, Jan N. M.
Vermeulen, Nico P. E.
Gooijer, Cees
van der Zwan, Gert
author_facet Bonifacio, Alois
Millo, Diego
Keizers, Peter H. J.
Boegschoten, Roald
Commandeur, Jan N. M.
Vermeulen, Nico P. E.
Gooijer, Cees
van der Zwan, Gert
author_sort Bonifacio, Alois
collection PubMed
description Surface-enhance resonance Raman scattering spectra of the heme–thiolate enzyme cytochrome P450 2D6 (CYP2D6) adsorbed on Ag electrodes coated with 11-mercaptoundecanoic acid (MUA) were obtained in various experimental conditions. An analysis of these spectra, and a comparison between them and the RR spectra of CYP2D6 in solution, indicated that the enzyme’s active site retained its nature of six-coordinated low-spin heme upon immobilization. Moreover, the spectral changes detected in the presence of dextromethorphan (a CYP2D6 substrate) and imidazole (an exogenous heme axial ligand) indicated that the immobilized enzyme also preserved its ability to reversibly bind a substrate and form a heme–imidazole complex. The reversibility of these processes could be easily verified by flowing alternately solutions of the various compounds and the buffer through a home-built spectroelectrochemical flow cell which contained a sample of immobilized protein, without the need to disassemble the cell between consecutive spectral data acquisitions. Despite immobilized CYP2D6 being effectively reduced by a sodium dithionite solution, electrochemical reduction via the Ag electrode was not able to completely reduce the enzyme, and led to its extensive inactivation. This behavior indicated that although the enzyme’s ability to exchange electrons is not altered by immobilization per se, MUA-coated electrodes are not suited to perform direct electrochemistry of CYP2D6. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s00775-007-0303-1) contains supplementary material, which is available to authorized users.
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spelling pubmed-20994602007-12-03 Active-site structure, binding and redox activity of the heme–thiolate enzyme CYP2D6 immobilized on coated Ag electrodes: a surface-enhanced resonance Raman scattering study Bonifacio, Alois Millo, Diego Keizers, Peter H. J. Boegschoten, Roald Commandeur, Jan N. M. Vermeulen, Nico P. E. Gooijer, Cees van der Zwan, Gert J Biol Inorg Chem Original Paper Surface-enhance resonance Raman scattering spectra of the heme–thiolate enzyme cytochrome P450 2D6 (CYP2D6) adsorbed on Ag electrodes coated with 11-mercaptoundecanoic acid (MUA) were obtained in various experimental conditions. An analysis of these spectra, and a comparison between them and the RR spectra of CYP2D6 in solution, indicated that the enzyme’s active site retained its nature of six-coordinated low-spin heme upon immobilization. Moreover, the spectral changes detected in the presence of dextromethorphan (a CYP2D6 substrate) and imidazole (an exogenous heme axial ligand) indicated that the immobilized enzyme also preserved its ability to reversibly bind a substrate and form a heme–imidazole complex. The reversibility of these processes could be easily verified by flowing alternately solutions of the various compounds and the buffer through a home-built spectroelectrochemical flow cell which contained a sample of immobilized protein, without the need to disassemble the cell between consecutive spectral data acquisitions. Despite immobilized CYP2D6 being effectively reduced by a sodium dithionite solution, electrochemical reduction via the Ag electrode was not able to completely reduce the enzyme, and led to its extensive inactivation. This behavior indicated that although the enzyme’s ability to exchange electrons is not altered by immobilization per se, MUA-coated electrodes are not suited to perform direct electrochemistry of CYP2D6. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s00775-007-0303-1) contains supplementary material, which is available to authorized users. Springer-Verlag 2007-09-26 2008-01 /pmc/articles/PMC2099460/ /pubmed/17899220 http://dx.doi.org/10.1007/s00775-007-0303-1 Text en © SBIC 2007
spellingShingle Original Paper
Bonifacio, Alois
Millo, Diego
Keizers, Peter H. J.
Boegschoten, Roald
Commandeur, Jan N. M.
Vermeulen, Nico P. E.
Gooijer, Cees
van der Zwan, Gert
Active-site structure, binding and redox activity of the heme–thiolate enzyme CYP2D6 immobilized on coated Ag electrodes: a surface-enhanced resonance Raman scattering study
title Active-site structure, binding and redox activity of the heme–thiolate enzyme CYP2D6 immobilized on coated Ag electrodes: a surface-enhanced resonance Raman scattering study
title_full Active-site structure, binding and redox activity of the heme–thiolate enzyme CYP2D6 immobilized on coated Ag electrodes: a surface-enhanced resonance Raman scattering study
title_fullStr Active-site structure, binding and redox activity of the heme–thiolate enzyme CYP2D6 immobilized on coated Ag electrodes: a surface-enhanced resonance Raman scattering study
title_full_unstemmed Active-site structure, binding and redox activity of the heme–thiolate enzyme CYP2D6 immobilized on coated Ag electrodes: a surface-enhanced resonance Raman scattering study
title_short Active-site structure, binding and redox activity of the heme–thiolate enzyme CYP2D6 immobilized on coated Ag electrodes: a surface-enhanced resonance Raman scattering study
title_sort active-site structure, binding and redox activity of the heme–thiolate enzyme cyp2d6 immobilized on coated ag electrodes: a surface-enhanced resonance raman scattering study
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2099460/
https://www.ncbi.nlm.nih.gov/pubmed/17899220
http://dx.doi.org/10.1007/s00775-007-0303-1
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