首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Role of cytochrome B5 in modulating peroxide-supported cyp3a4 activity: evidence for a conformational transition and cytochrome P450 heterogeneity.
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Role of cytochrome B5 in modulating peroxide-supported cyp3a4 activity: evidence for a conformational transition and cytochrome P450 heterogeneity.

机译:细胞色素B5在调节过氧化物支持的cyp3a4活性中的作用:构象转变和细胞色素P450异质性的证据。

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摘要

The role of cytochrome b(5) (b(5)) in the alpha-naphthoflavone (alpha-NF)-mediated inhibition of H(2)O(2)-supported 7-benzyloxyquinoline (7-BQ) debenzylation by heterologously expressed and purified cytochrome P450 3A4 (CYP3A4) was studied. Although alpha-NF showed negligible effect in an NADPH-dependent reconstituted system, inhibition of 7-BQ oxidation was observed in the H(2)O(2) system. Analysis of the effect of various constituents of a standard reconstituted system on H(2)O(2)-supported activity showed that b(5) alone resulted in a 2.5-fold increase in the k(cat) value and reversed the inhibitory effect of alpha-NF. In addition, titration with b(5) suggested that only 65% of the CYP3A4 participated in the interaction with b(5), consistent with cytochrome P450 (P450) heterogeneity. Study of the influence of b(5) on the kinetics of H(2)O(2)-dependent destruction of the P450 heme moiety suggested two distinct conformers of CYP3A4 with different sensitivity to heme loss. In the absence of b(5), 66% of the wild-type enzyme was bleached in the fast phase, whereas the addition of b(5) decreased the fraction of the fast phase to 16%. Finally, to locate amino acid residues that might influence b(5) action, several active site mutants were tested. Substitution of Ser-119, Ile-301, Ala-305, Ile-369, or Ala-370 with the larger Phe or Trp decreased or even abolished the activation by b(5). Ser-119 is in the B'-C loop, a predicted b(5)-P450 interaction site, and Ile-301 and Ala-305 are closest to the heme. In conclusion, the interaction of b(5) with P450 apparently leads to a conformational transition, which results in redistribution of the CYP3A4 pool.
机译:细胞色素b(5)(b(5))在α-萘黄酮(alpha-NF)介导的H(2)O(2)-支持的7-苄氧基喹啉(7-BQ)脱苄作用的异源表达抑制作用并研究了纯化的细胞色素P450 3A4(CYP3A4)。尽管在NADPH依赖的重组系统中,α-NF的作用可忽略不计,但在H(2)O(2)系统中观察到了7-BQ氧化的抑制作用。分析标准重构系统的各种成分对H(2)O(2)支持的活性的影响表明,单独使用b(5)会导致k(cat)值增加2.5倍并逆转了抑制作用α-NF。此外,用b(5)滴定表明只有65%的CYP3A4参与与b(5)的相互作用,与细胞色素P450(P450)异质性一致。 b(5)对P450血红素部分的H(2)O(2)依赖性破坏动力学的影响的研究表明,CYP3A4的两个不同构象异构体对血红素丢失的敏感性不同。在不存在b(5)的情况下,在快速阶段漂白了66%的野生型酶,而添加b(5)将快速阶段的比例降低到16%。最后,为了定位可能影响b(5)作用的氨基酸残基,测试了几个活性位点突变体。用较大的Phe或Trp取代Ser-119,Ile-301,Ala-305,Ile-369或Ala-370会降低甚至取消b(5)的激活。 Ser-119位于B'-C环中,是预测的b(5)-P450相互作用位点,而Ile-301和Ala-305最接近血红素。总之,b(5)与P450的相互作用显然导致构象过渡,从而导致CYP3A4库重新分布。

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