Abstract
Peptidylglycine alpha-amidating activity catalyses the oxidation of a C-terminally glycine-extended peptide to a desglycine alpha-amidated peptide at the expense of ascorbate and O2 in the presence of Cu2+. The reaction involves oxidative N-dealkylation within the terminal glycine residue, with retention of the glycine N atom and release of the remainder as glyoxylate. Recent studies by us and others have revealed that the reaction consists of two steps via a carbinolamide as an intermediate (peptidyl alpha-hydroxyglycine), and also that two separate enzymes derived from a common precursor protein catalyse these steps, formation of the carbinolamide and its conversion into alpha-amide and glyoxylate. As for the mechanism of carbinolamide formation, two distinct pathways can be considered: direct mono-oxygenation at the glycine alpha-C atom and dehydrogenation leading to an imine followed by hydration. To draw a distinction between them, we carried out the reaction with D-Tyr-Val-Gly as the substrate either in the H2(18)O-enriched medium or under an atmosphere of 18O2, and isolated the alpha-hydroxylglycine intermediate. The fast-atom-bombardment mass-spectral analysis demonstrated that the hydroxy O atom comes from O2, but not from H2O, indicating that the alpha-hydroxylation should be a monooxygenase reaction.
MeSH Terms
Amidine-Lyases
Amino Acid Sequence
Animals
Ascorbic Acid/metabolism
Brain/enzymology
Chromatography, High Pressure Liquid
Copper/pharmacology
Glycine/metabolism
Hydroxylation
Lyases/metabolism
Magnetic Resonance Spectroscopy
Mixed Function Oxygenases/metabolism
Molecular Sequence Data
Molecular Structure
Multienzyme Complexes
Oligopeptides/chemistry,metabolism
Oxygen/metabolism
Rats
Spectrometry, Mass, Fast Atom Bombardment
Chemicals
Multienzyme Complexes
Oligopeptides
Copper
Mixed Function Oxygenases
peptidylglycine monooxygenase
Lyases
Amidine-Lyases
peptidylamidoglycolate lyase
Ascorbic Acid
Oxygen
Glycine
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Noguchi M
Department of Biochemistry, Fukushima Medical College, Japan.
Seino H
Kochi H
Okamoto H
Tanaka T
Hirama M
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