AbstractUrate oxidase from Aspergillus flavus is a 135kDa homo-tetramer which has a hydrophobic cavity buried within each monomer and located close to its active site. Crystallographic studies under moderate gas pressure and high hydrostatic pressure have shown that both gas presence and high pressure would rigidify the cavity leading to an inhibition of the catalytic activity. Analysis of the cavity volume variations and functional modifications suggest that the flexibility of the cavity would be an essential parameter for the active site efficiency. This cavity would act as a connecting vessel to give flexibility to the neighboring active site, and its expansion under pure oxygen pressure reveals that it might serve as a transient reservo...
Hydrogenase enzymes catalyse the reversible conversion of protons and electrons into molecular hydro...
Terminal respiratory oxidases are highly efficient molecular machines. These most important bioenerg...
High-resolution X-ray structures of the complexes of Aspergillus Øavus urate oxidase (Uox) with thre...
AbstractUrate oxidase from Aspergillus flavus is a 135kDa homo-tetramer which has a hydrophobic cavi...
AbstractStructure-function relationships in the tetrameric enzyme urate oxidase were investigated us...
CERVOXYInternational audienceThe stability of the tetrameric enzyme urate oxidase in complex with ex...
We report the three-dimensional structure determined by high-pressure macromolecular crystallography...
AbstractThe localization of dioxygen sites in oxygen-binding proteins is a nontrivial experimental t...
International audienceUrate oxidase from Aspergillus flavus (uricase or Uox; EC 1.7.3.3) is a 135 kD...
International audienceHydrogenases are metalloenzymes that catalyze the redox conversion between H2 ...
Protein fold adaptation to novel enzymatic reactions is a fundamental evolutionary process. Cofactor...
Hydrogenase enzymes catalyse the reversible conversion of protons and electrons into molecular hydro...
Terminal respiratory oxidases are highly efficient molecular machines. These most important bioenerg...
High-resolution X-ray structures of the complexes of Aspergillus Øavus urate oxidase (Uox) with thre...
AbstractUrate oxidase from Aspergillus flavus is a 135kDa homo-tetramer which has a hydrophobic cavi...
AbstractStructure-function relationships in the tetrameric enzyme urate oxidase were investigated us...
CERVOXYInternational audienceThe stability of the tetrameric enzyme urate oxidase in complex with ex...
We report the three-dimensional structure determined by high-pressure macromolecular crystallography...
AbstractThe localization of dioxygen sites in oxygen-binding proteins is a nontrivial experimental t...
International audienceUrate oxidase from Aspergillus flavus (uricase or Uox; EC 1.7.3.3) is a 135 kD...
International audienceHydrogenases are metalloenzymes that catalyze the redox conversion between H2 ...
Protein fold adaptation to novel enzymatic reactions is a fundamental evolutionary process. Cofactor...
Hydrogenase enzymes catalyse the reversible conversion of protons and electrons into molecular hydro...
Terminal respiratory oxidases are highly efficient molecular machines. These most important bioenerg...
High-resolution X-ray structures of the complexes of Aspergillus Øavus urate oxidase (Uox) with thre...