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Functional role of residues in the helix B' region of cytochrome P450 2B1
Authors:Honma Wataru  Li Weihua  Liu Hong  Scott Emily E  Halpert James R
Affiliation:Department of Biochemistry and Biophysics, Texas A and M University, College Station, TX 77843-2128, USA. fitzpat@tamu.edu
Abstract:While several flavoproteins will oxidize nitroalkanes in addition to their physiological substrates, nitroalkane oxidase (NAO) is the only one which does not require the anionic nitroalkane. This, in addition to the induction of NAO by nitroethane seen in Fusarium oxysporum, suggests that oxidation of a nitroaliphatic species is the physiological role of the enzyme. Mechanistic studies of the reaction with nitroethane as substrate have established many of the details of the enzymatic reaction. The enzyme is unique in being the only flavoprotein to date for which a carbanion is definitively established as an intermediate in catalysis. Recent structural analyses show that NAO is homologous to the acyl-CoA dehydrogenase and acyl-CoA oxidase families of enzymes. In NAO, the glutamate which acts as the active site base in the latter enzymes is replaced by an aspartate.
Keywords:Flavoprotein   Nitroalkane oxidase   Acyl-CoA dehydrogenase   Acyl-CoA oxidase   Structure   Mechanism
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