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Mechanism of the Flavoprotein d-6-Hydroxynicotine Oxidase: Substrate Specificity, pH and Solvent Isotope Effects, and Roles of Key Active-Site Residues.
- Source :
-
Biochemistry [Biochemistry] 2019 May 28; Vol. 58 (21), pp. 2534-2541. Date of Electronic Publication: 2019 May 10. - Publication Year :
- 2019
-
Abstract
- The flavoprotein d-6-hydroxynicotine oxidase catalyzes an early step in the oxidation of ( R)-nicotine, the oxidation of a carbon-nitrogen bond in the pyrrolidine ring of ( R)-6-hydroxynicotine. The enzyme is a member of the vanillyl alcohol oxidase/ p-cresol methylhydroxylase family of flavoproteins. The effects of substrate modifications on the steady-state and rapid-reaction kinetic parameters are not consistent with the quinone-methide mechanism of p-cresol methylhydroxylase. There is no solvent isotope effect on the k <subscript>cat</subscript> / K <subscript>amine</subscript> value with either ( R)-6-hydroxynicotine or the slower substrate ( R)-6-hydroxynornicotine. The effect of pH on the rapid-reaction kinetic parameters establishes that only the neutral form of the substrate and the correctly protonated form of the enzyme bind. The active-site residues Lys348, Glu350, and Glu352 are all properly positioned for substrate binding. The K348M substitution has only a small effect on the kinetic parameters; the E350A and E350Q substitutions decrease the k <subscript>cat</subscript> / K <subscript>amine</subscript> value by ∼20- and ∼220-fold, respectively, and the E352Q substitution decreases this parameter ∼3800-fold. The k <subscript>cat</subscript> / K <subscript>amine</subscript> -pH profile is bell-shaped. The p K <subscript>a</subscript> values in that profile are altered by replacement of ( R)-6-hydroxynicotine with ( R)-6-hydroxynornicotine as the substrate and by the substitutions for Glu350 and Glu352, although the profiles remain bell-shaped. The results are consistent with a network of hydrogen-bonded residues in the active site being involved in binding the neutral form of the amine substrate, followed by the transfer of a hydride from the amine to the flavin.
- Subjects :
- Biocatalysis
Catalytic Domain
Escherichia coli metabolism
Hydrogen Bonding
Hydrogen-Ion Concentration
Isotopes metabolism
Kinetics
Micrococcaceae metabolism
Nicotine chemistry
Nicotine metabolism
Oxidation-Reduction
Plasmids genetics
Substrate Specificity
Mixed Function Oxygenases chemistry
Mixed Function Oxygenases metabolism
Nicotine analogs & derivatives
Oxidoreductases chemistry
Oxidoreductases metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1520-4995
- Volume :
- 58
- Issue :
- 21
- Database :
- MEDLINE
- Journal :
- Biochemistry
- Publication Type :
- Academic Journal
- Accession number :
- 31046245
- Full Text :
- https://doi.org/10.1021/acs.biochem.9b00297