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Multiple pathways guide oxygen diffusion into flavoenzyme active sites

Academic Article
Publication Date:
2009
abstract:
Dioxygen (O(2)) and other gas molecules have a fundamental role in a variety of enzymatic reactions. However, it is only poorly understood which O(2) uptake mechanism enzymes employ to promote efficient catalysis and how general this is. We investigated O(2) diffusion pathways into monooxygenase and oxidase flavoenzymes, using an integrated computational and experimental approach. Enhanced-statistics molecular dynamics simulations reveal spontaneous protein-guided O(2) diffusion from the bulk solvent to preorganized protein cavities. The predicted protein-guided diffusion paths and the importance of key cavity residues for oxygen diffusion were verified by combining site-directed mutagenesis, rapid kinetics experiments, and high-resolution X-ray structures. This study indicates that monooxygenase and oxidase flavoenzymes employ multiple funnel-shaped diffusion pathways to absorb O(2) from the solvent and direct it to the reacting C4a atom of the flavin cofactor. The difference in O(2) reactivity among dehydrogenases, monooxygenases, and oxidases ultimately resides in the fine modulation of the local environment embedding the reactive locus of the flavin.
Iris type:
1.1 Articolo in rivista
Keywords:
oxygen; molecular dynamics; oxidative damage
List of contributors:
Baron, R; Riley, C; Chenprakhon, P; Thotsaporn, K; Winter, Rt; Alfieri, Andrea; Forneris, Federico; van Berkel, Wj; Chaiyen, P; Fraaije, Mw; Mattevi, Andrea; Mccammon, Ja
Authors of the University:
ALFIERI ANDREA
FORNERIS FEDERICO
MATTEVI ANDREA
Handle:
https://iris.unipv.it/handle/11571/201054
Published in:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
Journal
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