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Roles of NADPH-P450 reductase and apo- and holo-cytochrome b(5) on xenobiotic oxidations catalyzed by 12 recombinant human cytochrome P450s expressed in membranes of Escherichia coli

机译:NADPH-P450还原酶和脱辅基和全细胞色素b(5)在大肠杆菌膜上表达的12种重组人细胞色素P450催化的异种生物氧化中的作用

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Drug oxidation activities of 12 recombinant human cytochrome P450s (P450) coexpressed with human NADPH-P450 reductase (NPR) in bacterial membranes (P450/NPR membranes) were determined and compared with those of other recombinant systems and those of human liver microsomes. Addition of exogenous membrane-bound NPR to the P450/NPR membranes enhanced the catalytic activities of CYP2CS, CYP2C9, CYP2C19, CYP3A4, and CYP3A5. Enhancement of activities of CYP1A1, CYP1A2, CYP1B1, CYP2A6, CYP2B6, CYP2D6, and CYP2E1 in membranes was not observed after the addition of NPR (4 molar excess to each P450). Exogenous purified human cytochrome b(5) (b5) further enhanced catalytic activities of CYP2A6, CYP2B6, CYP2C8, CYP2E1, CYP3A4, and CYP3A5/NPR membranes. Catalytic activities of CYP2C9 and CYP2C19 were enhanced by addition of b5 in reconstituted systems but not in the P450/NPR membranes. Apo b5 (devoid of heme) enhanced catalytic activities when added to both membrane and reconstituted systems, except for CYP2E1/NPR membranes and the reconstituted system containing purified CYP2E1 and NPR. Catalytic activities in P450/NPR membranes fortified with b5 were roughly similar to those measured with microsomes of insect cells coexpressing P450 with NPR (and b5) and/or human liver microsomes, based on equivalent P450 contents. These results suggest that interactions of P450 and NPR coexpressed in membranes or mixed in reconstituted systems appear to be different in some human CYP2 family enzymes, possibly due to a conformational role of b5, P450/NPR membrane systems containing b5 are useful models for prediction of the rates for liver microsomal P450-dependent drug oxidations. (C) 2002 Elsevier Science (USA). [References: 40]
机译:测定了在细菌膜(P450 / NPR膜)中与人NADPH-P450还原酶(NPR)共表达的12种重组人细胞色素P450(P450)的药物氧化活性,并将其与其他重组系统和人肝微粒体的氧化活性进行了比较。向P450 / NPR膜添加外源膜结合NPR可增强CYP2CS,CYP2C9,CYP2C19,CYP3A4和CYP3A5的催化活性。加入NPR后(膜摩尔比每个P450多4摩尔)未观察到膜中CYP1A1,CYP1A2,CYP1B1,CYP2A6,CYP2B6,CYP2D6和CYP2E1的活性增强。外源纯化的人类细胞色素b(5)(b5)进一步增强了CYP2A6,CYP2B6,CYP2C8,CYP2E1,CYP3A4和CYP3A5 / NPR膜的催化活性。通过在重组体系中添加b5增强CYP2C9和CYP2C19的催化活性,但在P450 / NPR膜中则没有。将Apo b5(不含血红素)添加到膜和重组系统中时,均会增强催化活性,但CYP2E1 / NPR膜和包含纯化的CYP2E1和NPR的重组系统除外。基于等效的P450含量,用b5强化的P450 / NPR膜中的催化活性与用共表达P450和NPR的昆虫细胞微粒(和b5)和/或人肝微粒体测得的催化活性大致相似。这些结果表明,在某些人类CYP2家族酶中,共表达于膜中或混合于重组系统中的P450和NPR的相互作用似乎有所不同,这可能是由于b5的构象作用所致,含b5的P450 / NPR膜系统是预测B450的有用模型。肝微粒体P450依赖性药物氧化的速率。 (C)2002 Elsevier Science(美国)。 [参考:40]

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