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A role of proton transfer in peroxidase-catalyzed process elucidated by substrates docking calculations

BACKGROUND: Previous kinetic investigations of fungal-peroxidase catalyzed oxidation of N-aryl hydroxamic acids (AHAs) and N-aryl-N-hydroxy urethanes (AHUs) revealed that the rate of reaction was independent of the formal redox potential of substrates. Moreover, the oxidation rate was 3–5 orders of...

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Detalles Bibliográficos
Autores principales: Kulys, Juozas, Ziemys, Arturas
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2001
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC55340/
https://www.ncbi.nlm.nih.gov/pubmed/11545682
http://dx.doi.org/10.1186/1472-6807-1-3
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author Kulys, Juozas
Ziemys, Arturas
author_facet Kulys, Juozas
Ziemys, Arturas
author_sort Kulys, Juozas
collection PubMed
description BACKGROUND: Previous kinetic investigations of fungal-peroxidase catalyzed oxidation of N-aryl hydroxamic acids (AHAs) and N-aryl-N-hydroxy urethanes (AHUs) revealed that the rate of reaction was independent of the formal redox potential of substrates. Moreover, the oxidation rate was 3–5 orders of magnitude less than for oxidation of physiological phenol substrates, though the redox potential was similar. RESULTS: To explain the unexpectedly low reactivity of AHAs and AHUs we made ab initio calculations of the molecular structure of the substrates following in silico docking in the active center of the enzyme. CONCLUSIONS: AHAs and AHUs were docked at the distal side of heme in the sites formed by hydrophobic amino acid residues that retarded a proton transfer and finally the oxidation rate. The analogous phenol substrates were docked at different sites permitting fast proton transfer in the relay of distal His and water that helped fast substrate oxidation.
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spelling pubmed-553402001-09-12 A role of proton transfer in peroxidase-catalyzed process elucidated by substrates docking calculations Kulys, Juozas Ziemys, Arturas BMC Struct Biol Research Article BACKGROUND: Previous kinetic investigations of fungal-peroxidase catalyzed oxidation of N-aryl hydroxamic acids (AHAs) and N-aryl-N-hydroxy urethanes (AHUs) revealed that the rate of reaction was independent of the formal redox potential of substrates. Moreover, the oxidation rate was 3–5 orders of magnitude less than for oxidation of physiological phenol substrates, though the redox potential was similar. RESULTS: To explain the unexpectedly low reactivity of AHAs and AHUs we made ab initio calculations of the molecular structure of the substrates following in silico docking in the active center of the enzyme. CONCLUSIONS: AHAs and AHUs were docked at the distal side of heme in the sites formed by hydrophobic amino acid residues that retarded a proton transfer and finally the oxidation rate. The analogous phenol substrates were docked at different sites permitting fast proton transfer in the relay of distal His and water that helped fast substrate oxidation. BioMed Central 2001-08-28 /pmc/articles/PMC55340/ /pubmed/11545682 http://dx.doi.org/10.1186/1472-6807-1-3 Text en Copyright © 2001 Kulys and Ziemys; licensee BioMed Central Ltd. This is an Open Access article: verbatim copying and redistribution of this article are permitted in all media for any purpose, provided this notice is preserved along with the article's original URL.
spellingShingle Research Article
Kulys, Juozas
Ziemys, Arturas
A role of proton transfer in peroxidase-catalyzed process elucidated by substrates docking calculations
title A role of proton transfer in peroxidase-catalyzed process elucidated by substrates docking calculations
title_full A role of proton transfer in peroxidase-catalyzed process elucidated by substrates docking calculations
title_fullStr A role of proton transfer in peroxidase-catalyzed process elucidated by substrates docking calculations
title_full_unstemmed A role of proton transfer in peroxidase-catalyzed process elucidated by substrates docking calculations
title_short A role of proton transfer in peroxidase-catalyzed process elucidated by substrates docking calculations
title_sort role of proton transfer in peroxidase-catalyzed process elucidated by substrates docking calculations
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC55340/
https://www.ncbi.nlm.nih.gov/pubmed/11545682
http://dx.doi.org/10.1186/1472-6807-1-3
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