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PMID: 9776311 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Isoform specificity of trimethylamine N-oxygenation by human flavin-containing monooxygenase (FMO) and P450 enzymes: selective catalysis by FMO3.

Biochemical pharmacology ·Vol. 56 ·No. 8 ·1998-10-15 ·Pages 1005-12

Lang DH, Yeung CK, Peter RM, Ibarra C, Gasser R, Itagaki K, Philpot RM, Rettie AE

Abstract

In the present study, we expressed human flavin-containing monooxygenase 1 (FMO1), FMO3, FMO4t (truncated), and FMO5 in the baculovirus expression vector system at levels of 0.6 to 2.4 nmol FMO/mg of membrane protein. These four isoforms, as well as purified rabbit FMO2, and eleven heterologously expressed human P450 isoforms were examined for their capacity to metabolize trimethylamine (TMA) to its N-oxide (TMAO), using a new, specific HPLC method with radiochemical detection. Human FMO3 was by far the most active isoform, exhibiting a turnover number of 30 nmol TMAO/nmol FMO3/min at pH 7.4 and 0.5 mM TMA. None of the other monooxygenases formed TMAO at rates greater than 1 nmol/nmol FMO/min under these conditions. Human fetal liver, adult liver, kidney and intestine microsomes were screened for TMA oxidation, and only human adult liver microsomes provided substantial TMAO-formation (range 2.9 to 9.1 nmol TMAO/mg protein/min, N = 5). Kinetic studies of TMAO formation by recombinant human FMO3, employing three different analytical methods, resulted in a Km of 28 +/- 1 microM and a Vmax of 36.3 +/- 5.7 nmol TMAO/nmol FMO3/min. The Km determined in human liver microsomes ranged from 13.0 to 54.8 microM. Therefore, at physiological pH, human FMO3 is a very specific and efficient TMA N-oxygenase, and is likely responsible for the metabolic clearance of TMA in vivo in humans. In addition, this specificity provides a good in vitro probe for the determination of FMO3-mediated activity in human tissues, by analyzing TMAO formation at pH 7.4 with TMA concentrations not higher than 0.5 mM.

MeSH Terms
Chromatography, High Pressure Liquid Cytochrome P-450 Enzyme System/metabolism Humans Intestines/enzymology Kidney/enzymology Kinetics Liver/embryology,enzymology Methylamines/metabolism Microsomes/enzymology Microsomes, Liver/enzymology Oxidants/metabolism Oxygenases/metabolism
Chemicals
Methylamines Oxidants Cytochrome P-450 Enzyme System Oxygenases dimethylaniline monooxygenase (N-oxide forming) trimethyloxamine
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Lang D H
Department of Medicinal Chemistry, University of Washington, Seattle 98195, USA.
Yeung C K
Peter R M
Ibarra C
Gasser R
Itagaki K
Philpot R M
Rettie A E
Article Info
Journal
Biochemical pharmacology
Abbr.
Biochem Pharmacol
ISSN
0006-2952
Published
1998-10-15
Pages
1005-12
Language
English
Region
England
NLM ID
0101032
Subset
IM
Grants
NIGMS NIH HHS · GM43511 · United States
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