N-Dealkylation of anN-Cyclopropylamine by Horseradish Peroxidase. Fate of the Cyclopropyl Group
- 10 August 2001
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 123 (35), 8502-8508
- https://doi.org/10.1021/ja0111479
Abstract
Cyclopropylamines inactivate cytochrome P450 enzymes which catalyze their oxidative N-dealkylation. A key intermediate in both processes is postulated to be a highly reactive aminium cation radical formed by single electron transfer (SET) oxidation of the nitrogen center, but direct evidence for this has remained elusive. To address this deficiency and identify the fate of the cyclopropyl group lost upon N-dealkylation, we have investigated the oxidation of N-cyclopropyl-N-methylaniline (3) by horseradish peroxidase, a well-known SET enzyme. For comparison, similar studies were carried out in parallel with N-isopropyl-N-methylaniline (9) and N,N-dimethylaniline (8). Under standard peroxidatic conditions (HRP, H2O2, air), HRP oxidizes 8 completely to N-methylaniline (4) plus formaldehyde within 15−30 min, whereas 9 is oxidized more slowly (N-isopropylaniline (10) and formaldehyde (acetone and 4 are not formed). In contrast to results with 9, oxidation of 3 is complete in 14C]-3, [1‘-13C]-3, and [2‘,3‘-13C]-3 as substrates, radiochemical and NMR analyses of incubation mixtures revealed that the complete oxidation of 3 by HRP yields 4 (0.2 mol), β-hydroxypropionic acid (17, 0.2 mol), and N-methylquinolinium (16, 0.8 mol). In buffer purged with pure O2, the complete oxidation of 3 yields 4 (0.7 mol), 17 (0.7 mol), and 16 (0.3 mol), while under anaerobic conditions, 16 is formed quantitatively from 3. These results indicate that the aminium ion formed by SET oxidation of 3 undergoes cyclopropyl ring fragmentation exclusively to generate a distonic cation radical (14 +•) which then partitions between unimolecular cyclization (leading, after further oxidation, to 16) and bimolecular reaction with dissolved oxygen (leading to 4 and 17 in a 1:1 ratio). Neither β-hydroxypropionaldehyde, acrolein, nor cyclopropanone hydrate are formed as SET metabolites of 3. The synthetic and analytical methods developed in the course of these studies should facilitate the application of cyclopropylamine-containing probes to reactions catalyzed by cytochrome P450 enzymes.Keywords
This publication has 19 references indexed in Scilit:
- trans-2-Phenylcyclopropylamine is a substrate for and inactivator of horseradish peroxidaseBiochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1996
- A Versatile New Preparation of Cyclopropylamines from Acid DialkylamidesAngewandte Chemie International Edition in English, 1996
- Transition Metal Oxides By C. N. R. Rao (Indian Institute of Science) and B. Raveau (École Nationale Superieure d'Ingenieurs, Univ. de Caen). VCH Publishers, Inc.: Weinheim, Germany, and New York. 1995. xii + 338 pp. $115.00. ISBN 1-56081-647-3.Journal of the American Chemical Society, 1996
- One-electron oxidations by peroxidasesXenobiotica, 1995
- Generation and fate of enamines in the microsomal metabolism of cyclic tertiary aminesBiochemical and Biophysical Research Communications, 1991
- Lewis acid catalysis of photochemical reactions. 8. Photodimerization and cross-cycloaddition of coumarinJournal of the American Chemical Society, 1989
- Mechanism of cytochrome P-450 catalysis. Mechanism of N-dealkylation and amine oxide deoxygenationJournal of the American Chemical Society, 1985
- Mechanism of inhibition of aldehyde dehydrogenase by cyclopropanone hydrate and the mushroom toxin coprineBiochemistry, 1979
- Book ReviewsJournal of Medicinal Chemistry, 1976
- Kinetics of azo dye formation. Micellar effectsThe Journal of Organic Chemistry, 1972