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CYP3A4*16andCYP3A4*18Alleles Found in East Asians Exhibit Differential Catalytic Activities for Seven CYP3A4 Substrate Drugs

Authors :
Takuya Yoshimura
Noriko Harakawa
Haruhiro Okuda
Yoshiyuki Fujimura
Jun-ichi Sawada
Su-Ryang Kim
Keiko Maekawa
Takuro Niwa
Fumika Aohara
Masahiro Tohkin
Kimie Sai
Noriko Katori
Ryuichi Hasegawa
Yoshiro Saito
Mikihiko Naito
Source :
Drug Metabolism and Disposition. 38:2100-2104
Publication Year :
2010
Publisher :
American Society for Pharmacology & Experimental Therapeutics (ASPET), 2010.

Abstract

CYP3A4, the major form of cytochrome P450 (P450) expressed in the adult human liver, is involved in the metabolism of approximately 50% of commonly prescribed drugs. Several genetic polymorphisms in CYP3A4 are known to affect its catalytic activity and to contribute in part to interindividual differences in the pharmacokinetics and pharmacodynamics of CYP3A4 substrate drugs. In this study, catalytic activities of the two alleles found in East Asians, CYP3A4*16 (T185S) and CYP3A4*18 (L293P), were assessed using the following seven substrates: midazolam, carbamazepine, atorvastatin, paclitaxel, docetaxel, irinotecan, and terfenadine. The holoprotein levels of CYP3A4.16 and CYP3A4.18 were significantly higher and lower, respectively, than that of CYP3A4.1 when expressed in Sf21 insect cell microsomes together with human NADPH-P450 reductase. CYP3A4.16 exhibited intrinsic clearances (V(max)/K(m)) that were lowered considerably (by 84-60%) for metabolism of midazolam, carbamazepine, atorvastatin, paclitaxel, and irinotecan compared with CYP3A4.1 due to increased K(m) with or without decreased V(max) values, whereas no apparent decrease in intrinsic clearance was observed for docetaxel. On the other hand, K(m) values for CYP3A4.18 were comparable to those for CYP3A4.1 for all substrates except terfenadine; but V(max) values were lower for midazolam, paclitaxel, docetaxel, and irinotecan, resulting in partially reduced intrinsic clearance values (by 34-52%). These results demonstrated that the impacts of both alleles on CYP3A4 catalytic activities depend on the substrates used. Thus, to evaluate the influences of both alleles on the pharmacokinetics of CYP3A4-metabolized drugs and their drug-drug interactions, substrate drug-dependent characteristics should be considered for each drug.

Details

ISSN :
1521009X and 00909556
Volume :
38
Database :
OpenAIRE
Journal :
Drug Metabolism and Disposition
Accession number :
edsair.doi.dedup.....128ec6d9b374acf2d78e94c20d53e1e1
Full Text :
https://doi.org/10.1124/dmd.110.034140