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J Biol Chem ; 283(36): 24738-47, 2008 Sep 05.
Article in English | MEDLINE | ID: mdl-18614534

ABSTRACT

The flavoprotein cholesterol oxidase from Brevibacterium sterolicum (BCO) possesses a narrow channel that links the active center containing the flavin to the outside solvent. This channel has been proposed to serve for the access of dioxygen; it contains at its "bottom" a Glu-Arg pair (Glu-475-Arg-477) that was found by crystallographic studies to exist in two forms named "open" and "closed," which in turn was suggested to constitute a gate functioning in the control of oxygen access. Most mutations of residues that flank the channel have minor effects on the oxygen reactivity. Mutations of Glu-311, however, cause a switch in the basic kinetic mechanism of the reaction of reduced BCO with dioxygen; wild-type BCO and most mutants show a saturation behavior with increasing oxygen concentration, whereas for Glu-311 mutants a linear dependence is found that is assumed to reflect a "simple" second order process. This is taken as support for the assumption that residue Glu-311 finely tunes the Glu-475-Arg-477 pair, forming a gate that functions in modulating the access/reactivity of dioxygen.


Subject(s)
Bacterial Proteins/chemistry , Brevibacterium/enzymology , Cholesterol Oxidase/chemistry , Flavoproteins/chemistry , Oxygen/metabolism , Amino Acid Substitution , Bacterial Proteins/genetics , Binding Sites/genetics , Brevibacterium/genetics , Cholesterol Oxidase/genetics , Crystallography, X-Ray , Flavoproteins/genetics , Kinetics , Mutation, Missense , Protein Structure, Tertiary/genetics
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