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Rationally engineered flavin-dependent oxidase reveals steric control of dioxygen reduction.

FEBS J.. 2015; 
ZafredDomen,SteinerBarbara,TeufelbergerAndrea R,HromicAltijana,KarplusP Andrew,SchofieldChristopher J,WallnerSilvia,MacherouxP
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摘要

The ability of flavoenzymes to reduce dioxygen varies greatly, and is controlled by the protein environment, which may cause either a rapid reaction (oxidases) or a sluggish reaction (dehydrogenases). Previously, a 'gatekeeper' amino acid residue was identified that controls the reactivity to dioxygen in proteins from the vanillyl alcohol oxidase superfamily of flavoenzymes. We have identified an alternative gatekeeper residue that similarly controls dioxygen reactivity in the grass pollen allergen Phl p 4, a member of this superfamily that has glucose dehydrogenase activity and the highest redox potential measured in a flavoenzyme. A substitution at the alternative gatekeeper site (I153V) transformed t... More

关键词

dehydrogenase,enzyme design,oxidase,oxyanion hole,oxygen reacti