A Novel P450-Catalyzed Transformation of the 2,2,6,6-Tetramethyl Piperidine Moiety to a 2,2-Dimethyl Pyrrolidine in Human Liver Microsomes: Characterization by High Resolution Quadrupole-Time-of-Flight Mass Spectrometry and 1H-NMR
- 1 February 2003
- journal article
- Published by Elsevier in Drug Metabolism and Disposition
- Vol. 31 (2) , 215-223
- https://doi.org/10.1124/dmd.31.2.215
Abstract
We describe herein a novel metabolic fate of the 2,2,6,6-tetramethyl-piperidine (2,2,6,6-TMPi) moiety to a ring-contracted 2,2-dimethyl pyrrolidine (2,2-DMPy) in human liver microsomal incubations. The existence of this pathway was demonstrated for three compounds (I-III) of varied structures suggesting that this may be a general biotransformation reaction for the 2,2,6,6-TMPi moiety. The 2,2-DMPy metabolites formed in incubations of the three compounds with human liver microsomes were characterized by online high performance liquid chromatography coupled to a high resolution hybrid quadrupole-time-of-flight mass spectrometer. Suggested elemental composition obtained from accurate mass measurements of the molecular ions and fragment ions of the metabolites clearly indicated the loss of a mass equivalent to C3H6 from the parent 2,2,6,6-TMPi functionality. Additional accurate tandem mass spectrometry data indicated that one of the original two gem-dimethyl groups was intact in the metabolite structure. Proof of a ring-contracted 2,2-DMPy structure was obtained using1H-NMR experiments on a metabolite purified from liver microsomal incubations, which showed only two geminal methyl groups, instead of four in the parent compound. Two-dimensional correlation spectroscopy and decoupling experiments established aliphatic protons arranged in a pyrrolidine ring pattern. The fact that the formation of 2,2-DMPy metabolites in human liver microsomes was NADPH-dependent suggested that this novel metabolic reaction was catalyzed by the cytochrome P450 (P450) enzyme(s). Immunoinhibition studies in human liver microsomal incubations using anti-P450 monoclonal antibodies and experiments with insect cell microsomes containing individually expressed recombinant human P450 isozymes indicated that multiple P450 isozymes were capable of catalyzing this novel metabolic transformation.This publication has 15 references indexed in Scilit:
- p38 Inhibitors: piperidine- and 4-aminopiperidine-substituted naphthyridinones, quinolinones, and dihydroquinazolinonesBioorganic & Medicinal Chemistry Letters, 2003
- Fragmentation studies on monensin A by sequential electrospray mass spectrometryThe Analyst, 2002
- Screening and identification of unknown contaminants in water with liquid chromatography and quadrupole-orthogonal acceleration-time-of-flight tandem mass spectrometryJournal of Chromatography A, 2001
- Common and Uncommon Cytochrome P450 Reactions Related to Metabolism and Chemical ToxicityChemical Research in Toxicology, 2001
- Identification of anN-(hydroxysulfonyl)oxy metabolite usingin vitro microorganism screening, high-resolution and tandem electrospray ionization mass spectrometryRapid Communications in Mass Spectrometry, 2000
- Exact mass measurement of product ions for the structural elucidation of drug metabolites with a tandem quadrupole orthogonal-acceleration time-of-flight mass spectrometerJournal of the American Society for Mass Spectrometry, 1999
- Potential Metabolic Bioactivation Pathways Involving Cyclic Tertiary Amines and AzaarenesChemical Research in Toxicology, 1997
- Oxygen Activation and ReactivityPublished by Springer Nature ,1995
- The metabolism of alicyclic amines to reactive iminium ion intermediatesEuropean Journal of Drug Metabolism and Pharmacokinetics, 1994
- [56] Isolation of P450 enzymes from human liverPublished by Elsevier ,1991