首页> 外文期刊>Chemical research in toxicology >Cytochrome P450 1A1, 2C9, 2C19, and 3A4 Polymorphisms Account for Interindividual Variability of Toxicological Drug Metabolism in Cynomolgus Macaques
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Cytochrome P450 1A1, 2C9, 2C19, and 3A4 Polymorphisms Account for Interindividual Variability of Toxicological Drug Metabolism in Cynomolgus Macaques

机译:细胞色素P450 1A1,2C9,2C19和3A4多态性算用于Cynomolgus MAAQUES中毒理学药物代谢的细胞分类变异性

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摘要

Cytochromes P450 (P450s) and their genetic variants in humans are important drug-metabolizing enzymes partly accounting for interindividual variations in drug metabolism and toxicity. However, these genetic variants in P450s have not been fully investigated in cynomolgus macaques, a nonhuman primate species widely used in toxicological studies. In this study, genetic variants found in cynomolgus CYP1A1, CYP2C9 (formerly CYP2C43), CYP2C19 (CYP2C75), and CYP3A4 (CYP3A8) were assessed on functional importance. Resequencing of CYP1A1 in cynomolgus macaques found 18 nonsynonymous variants, of which M121I and V382I were located in SRSs, domains potentially important for P450 function. By further analyzing these two variants, V382I was significantly associated with lower drug-metabolizing activities in the liver for the heterozygotes than the wild types. Similarly, the heterozygotes or homozygotes of CYP2C9 variants (A82V and H344R) and CYP2C19 variant (A490V) showed significantly lower drug-metabolizing activities in the liver than the wild types. Moreover, the homozygotes of CYP3A4 variant (S437N) showed significantly higher activities than the wild type in the liver. Kinetic analyses using recombinant proteins revealed that CYP2C9 variants (A82V and H344R) showed substantially lower K-s values than the wild type, although CYPIA1 variant (V382I) showed kinetic parameters similar to the wild type. Likewise, CYP2C19 variant (A490V) showed substantially a lower V-max/K-m value than the wild type, whereas CYP3A4 variant (S437N) showed a higher V-max/K-m value than the wild type. These results suggest the toxicologically functional importance of CYP2C9 variants (A82V and H344R), CYP2C19 variant (A490V), and CYP3A4 variant (S437N) for hepatic drug metabolism in cynomolgus macaques.
机译:细胞色素P450(P450S)及其在人体中的遗传变异是重要的药物代谢酶,部分地核算了药物代谢和毒性的细胞性变异。然而,P450S中的这些遗传变异尚未在Cynomolgus MAKQUES中完全研究,这是一种广泛用于毒理学研究的非人类灵长类动物。在该研究中,在Cynomolgus Cyp1a1,Cyp2C9(以前Cyp2C43),Cyp2C19(Cyp2C75)和Cyp3A4(CYP3A8)中发现的遗传变异是关于功能的重要性。 CYP1A1在Cynomolgus Macaques中的Resequeccing发现了18个非纯变种,其中M121i和V382i位于SRS中,域可能对P450功能很重要。通过进一步分析这两个变体,V382I显着与肝脏肝脏的药物代谢活性显着相关,所述杂合子比野生类型在一起。类似地,CYP2C9变体(A82V和H344R)和CYP2C19变体(A490V)的杂小精体或纯合子(A82V和H344R)显示出肝脏的显着降低的药物代谢活性而不是野生类型。此外,CYP3A4变体的纯合子(S437N)显示出比肝脏中的野生类型显着更高的活动。使用重组蛋白的动力学分析显示CYP2C9变体(A82V和H344R)显示出比野生型基本上低的K-S值,尽管CYPIA1变体(V382I)显示出类似于野生型的动力学参数。同样地,CYP2C19变体(A490V)显示出比野生型的V-MAX / K-M值基本上较低,而CYP3A4变体(S437N)显示比野生型更高的V-MAX / K-M值。这些结果表明CYP2C9变体(A82V和H344R),CYP2C19变体(A490V)和CYP3A4变体(S437N)在肝脏药物代谢中的CYP2C19变体(A490V)和CYP3A4变异(S437N)的毒理学功能重要性。

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