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Published on: February 3, 2012
Cytochrome P450 expression and regulation in CYP3A4/CYP2D6 double transgenic humanized mice
Melanie A Felmlee1, Hoi-Kei Lon, Frank J Gonzalez
1Department of Pharmaceutical Sciences, School of Pharmacy and Pharmaceutical Sciences, University at Buffalo, The State University of New York, Buffalo, NY 14260, USA.
Abstract:
Analysis of the developmental and sexual expression of cytochrome P450 drug-metabolizing enzymes is impeded by multiple and varied external factors that influence its regulation. In the present study, a CYP2D6/CYP3A4-double transgenic (Tg-CYP2D6/CYP3A4) mouse model was employed to investigate hepatic CYP2D6 and CYP3A4 ontogeny and sexual dimorphism. Both age and sex have considerable effects on hepatic CYP3A4 protein expression in 3- to 8-week-old transgenic mice, whereas neither factor alters CYP2D6 content. Constitutive CYP2D6 expression resulted in 2- to 3-fold higher dextromethorphan O-demethylase activity in Tg-CYP2D6/CYP3A4 mouse liver microsomes compared with wild-type mice. In contrast, expression of CYP3A4 in transgenic mouse livers did not increase dextromethorphan N-demethylase and midazolam 1'-hydroxylase activities. Pretreatment with pregnenolone 16alpha-carbonitrile (PCN) and 1,4-bis-2-(3, 5-dichloropyridyloxy)-benzene (TCPOBOP) elevated CYP3A4 expression in double transgenic mice. Interestingly, induction of hepatic CYP3A4 was greater in females than age- and treatment-matched males. Consequently, the increase in midazolam 1'-hydroxylase activity was markedly higher in 8-week-old female mice than in corresponding males (8-fold versus 6-fold for PCN treatment and 6-fold versus 5-fold for TCPOBOP). Furthermore, increases in testosterone 6beta-hydroxylase activity after CYP3A induction were relatively lower compared with those in midazolam 1'-hydroxylation for age-, sex-, and treatment-matched mice. The difference in CYP3A4 expression and induction between male and female mice suggests that women may be more susceptible to CYP3A4-mediated drug-drug interactions, and the extent of drug-drug interactions could be substrate dependent.
Insights
This study used a CYP2D6/CYP3A4-double transgenic mouse model to examine drug-metabolizing enzymes. Results show age and sex significantly impact CYP3A4 expression, with females exhibiting greater induction, suggesting potential sex-based differences in drug interactions.
Area of Science:
- Pharmacology
- Biochemistry
- Genetics
Background:
- Cytochrome P450 (CYP) enzymes are crucial for drug metabolism.
- Understanding the developmental and sexual regulation of CYPs like CYP2D6 and CYP3A4 is vital for personalized medicine.
- External factors complicate the analysis of CYP enzyme expression and activity.
Purpose of the Study:
- To investigate the ontogeny and sexual dimorphism of hepatic CYP2D6 and CYP3A4 expression and activity.
- To utilize a CYP2D6/CYP3A4-double transgenic mouse model for this investigation.
- To assess the impact of age and sex on CYP enzyme activity and response to inducers.
Main Methods:
- Employing a CYP2D6/CYP3A4-double transgenic (Tg-CYP2D6/CYP3A4) mouse model.
- Analyzing hepatic CYP2D6 and CYP3A4 protein expression and enzyme activities (dextromethorphan O- and N-demethylase, midazolam 1'-hydroxylase, testosterone 6beta-hydroxylase) in mice of different ages and sexes.
- Administering pregnenolone 16alpha-carbonitrile (PCN) and TCPOBOP as CYP3A4 inducers.
Main Results:
- Age and sex significantly affected hepatic CYP3A4 protein expression in transgenic mice, but not CYP2D6 content.
- Constitutive CYP2D6 expression increased dextromethorphan O-demethylase activity, while CYP3A4 expression did not alter other tested activities.
- CYP3A4 induction by PCN and TCPOBOP was greater in female mice, leading to higher midazolam 1'-hydroxylase activity compared to males.
Conclusions:
- Hepatic CYP3A4 ontogeny and sexual dimorphism are evident, with females showing enhanced inducibility.
- Differences in CYP3A4 expression and induction between sexes suggest women may be more susceptible to CYP3A4-mediated drug-drug interactions.
- The extent of drug-drug interactions can be substrate-dependent and influenced by sex-based variations in CYP3A4 activity.

