Academic Thesis

Basic information

Name Inoue Takashi
Belonging department
Occupation name
researchmap researcher code B000003480
researchmap agency Okayama University of Science

Title

Progesterone hydroxylation by cytochromes P450 2C and 3A enzymes in marmoset liver microsomes.

Bibliography Type

 

Author

Kazuyuki Nakanishi
Shotaro Uehara
Yasuhiro Uno
Takashi Inoue
Erika Sasaki
Hiroshi Yamazaki

Summary

1. Common marmosets (Callithrix jacchus) are potentially useful nonhuman primate models for preclinical drug metabolism studies. However, the roles of marmoset cytochrome P450 (P450) isoforms in the oxidation of endobiotic progesterone have not been fully investigated. In this study, the roles of marmoset P450 isoforms in progesterone hydroxylation were extensively determined. 2. The activities of liver microsomes from individual marmosets with respect to progesterone 21/17α- and 16α/6β-hydroxylation were significantly correlated with those for flurbiprofen 4-hydroxylation and midazolam 1'-hydroxylation, respectively, as similar correlations have been found in humans. Anti-P450 2 C and 3 A antibodies suppressed progesterone 21/17α- and 16α/6β-hydroxylation, respectively, in marmoset liver microsomes. 3. Recombinant marmoset P450 2C58 and 2C19 catalyzed progesterone to form 21-hydroxyprogesterone and 16α-hydroxyprogesterone, respectively, as major products with high maximum velocity/Km values of 0.53 and 0.089 mL/min/nmol, respectively. Recombinant marmoset P450 3A4/90 oxidized progesterone to form 6β-hydroxyprogesterone as a major product with homotropic cooperativity (>1 of Hill coefficients). 4. These results indicate that the overall activities and roles of liver microsomal P450 enzymes in marmoset livers are similar to those in humans, especially for progesterone 21/17α- and 16α/6β-hydroxylation by marmoset P450 2 C and 3 A enzymes, respectively, suggesting important roles for these P450 enzymes in the metabolism of endobiotics in marmosets.

Magazine(name)

Xenobiotica; the fate of foreign compounds in biological systems

Publisher

 

Volume

48

Number Of Pages

8

StartingPage

757

EndingPage

763

Date of Issue

2018-08

Referee

Exist

Invited

Not exist

Language

English

Thesis Type

 

ISSN

 

DOI

10.1080/00498254.2017.1363444

NAID

 

PMID

 

J-GLOBAL ID

 

arXiv ID

 

ORCID Put Code

 

DBLP ID