Cytochrome P450 isoforms responsible for the N-deethylation and cyclohexane-hydroxylation of NS-21
Authors
Nakamura, A
Hirota, T
Morino, A
Imaoka, S
Funae, Y
Yamamoto, Y
Tasaki, T
Masuda, M
Kazusaka, A
Fujita, S
Citation
A. Nakamura et al., Cytochrome P450 isoforms responsible for the N-deethylation and cyclohexane-hydroxylation of NS-21, XENOBIOTICA, 29(3), 1999, pp. 243-252
Categorie Soggetti
Pharmacology & Toxicology
Journal title
XENOBIOTICA
SICI code
0049-8254(199903)29:3<243:CPIRFT>2.0.ZU;2-0
Abstract
1. Cytochrome P450 (P450) isoforms responsible for the N-deethylation and c
yclohexane-hydroxylation of (+/-)-4-diethylamino-1,1-dimethylbut-2-yn-1-yl
2-cyclohexyl-2-hydroxy-2-phenylacetate monohydrochloride monohydrate (NS-21
) have been identified in rat and man.
2. Anti-CYP2C11 antibody inhibited the N-deethylation of S- and R-NS-21 in
rat hepatic microsomes by 84 and 66% respectively, indicating that CYP2C11
is mainly responsible for these activities in male rats.
3. Of several human recombinant P450 isoforms, CYP3A4 had the activities fo
r the N-deethylation of S- and R-NS-21. In addition, triacetyloleandomycin
(TAO), an inhibitor of the CYP3A subfamily, significantly inhibited the N-d
eethylation of S- and R-NS-21 in human hepatic microsomes by 67 and 69 %, r
espectively. CYP3A4 therefore contributes to it in man.
4. Quinine, an inhibitor of the rat CYP2D subfamily, significantly inhibite
d the cyclohexane-4-cis-hydroxylation of S-NS-21 by 48%, in rat hepatic mic
rosomes. In contrast, this inhibitor had little effect on the cyclohexane-4
-trans-hydroxylation of S-NS-21, and the cyclohexane-4-cis- and trans-hydro
xylation of R-NS-21.
5. Human recombinant CYP3A4 catalysed the cyclohexane-4-trans-hydroxylation
of S-NS-21, and CYP2D6 supported the cyclohexane-4-cis- and trans-hydroxyl
ation of S-NS-21. Quinidine, an inhibitor of human CYP2D6, had little effec
t on these latter activities in human hepatic microsomes. TAO significantly
inhibited the cyclohexane-4-trans-hydroxylation of S-NS-21 by 75 %, indica
ting that CYP3A4 catalyses this reaction.