首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >PEROXO-IRON AND OXENOID-IRON SPECIES AS ALTERNATIVE OXYGENATING AGENTS IN CYTOCHROME P450-CATALYZED REACTIONS - SWITCHING BY THREONINE-302 TO ALANINE MUTAGENESIS OF CYTOCHROME P450 2B4
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PEROXO-IRON AND OXENOID-IRON SPECIES AS ALTERNATIVE OXYGENATING AGENTS IN CYTOCHROME P450-CATALYZED REACTIONS - SWITCHING BY THREONINE-302 TO ALANINE MUTAGENESIS OF CYTOCHROME P450 2B4

机译:在细胞色素P450催化反应中作为过氧化氧的过氧铁和氧杂环丁酸铁物种-通过苏氨酸302转变为细胞色素P450 2B4的丙氨酸诱变

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Among biological catalysts, cytochrome P450 is unmatched in its multiplicity of isoforms, inducers, substrates, and types of chemical reactions catalyzed. In the present study, evidence is given that this versatility extends to the nature of the active oxidant. Although mechanistic evidence from several laboratories points to a hypervalent iron-oxenoid species in P450-catalyzed oxygenation reactions. Akhtar and colleagues [Akhtar, M., Calder, M. R., Corina, D. L. & Wright, J. N. (1982) Biochem, J. 201, 569-580] proposed that in steroid deformylation effected by P450 aromatase an iron-peroxo species is involved. We have shown more recently that purified liver microsomal p450 cytochromes, including phenobarbital-induced p450 2B4, catalyze the analogous deformylation of a series of xenobiotic aldehydes with olefin formation. The investigation presented here on the effect of site-directed mutagenesis of threonine-302 to alanine on the activities of recombinant P450 2B4 with N-terminal amino acids 2-27 deleted [2B4 (Delta 2-27)] makes use of evidence from other laboratories that the corresponding mutation in bacterial P450s interferes with the activation of dioxygen to the oxenoid species by blocking proton delivery to the active site. The rates of NADPH oxidation, hydrogen peroxide production, and product formation from four substrates, including formaldehyde from benzphetamine N-demethylation, acetophenone from 1-phenylethanol oxidation, cyclohexanol from cyclohexane hydroxylation, and cyclohexene from cyclohexane carboxaldehyde deformylation, were determined with P450s 2B4, 2B4 (Delta 2-27), and 2B4 (Delta 2-27) T302A. Replacement of the threonine residue in the truncated cytochrome gave a 1.6- to 2.5-fold increase in peroxide formation in the presence of a substrate, but resulted in decreased product formation from benzphetamine (9 fold), cyclohexane (4-fold), and 1-phenylethanol (2-fold). In sharp contrast, the deformylation of cyclohexane carboxaldehyde by the T302A mutant was increased about 10-fold. On the basis of these findings and our previous evidence that aldehyde deformylation is supported by added H2O2, but not by artificial oxidants, we conclude that the iron-peroxy species is the direct oxygen donor. It remains to be established which of the many other oxidative reactions involving P450 utilize this species and the extent to which peroxo-iron and oxenoid-iron function as alternative oxygenating agents with the numerous isoforms of this versatile catalyst. [References: 48]
机译:在生物催化剂中,细胞色素P450在同工型,诱导剂,底物和所催化化学反应类型方面的多样性是不可比拟的。在本研究中,证据表明这种多功能性扩展到了活性氧化剂的性质。尽管来自多个实验室的机械证据表明,在P450催化的氧化反应中存在高价的铁氧类物质。 Akhtar和他的同事[Akhtar,M.,Calder,M. R.,Corina,D.L.&Wright,J.N.(1982)Biochem,J.201,569-580]提出,在受P450芳香化酶影响的类固醇去甲酰化反应中,会涉及到一种铁过氧化物。最近,我们发现纯化的肝微粒体p450细胞色素,包括苯巴比妥诱导的p450 2B4,催化一系列异烯醛与烯烃形成的类似去甲酰基化反应。苏氨酸302向丙氨酸的定点诱变对N末端氨基酸2-27缺失[2B4(Delta 2-27)]的重组P450 2B4活性的影响在此进行了研究。实验室指出,细菌P450中的相应突变通过阻止质子传递到活性位点而干扰了双氧到类固醇的活化。用P450 2B4测定了四种底物的NADPH氧化速率,过氧化氢生成速率和从四种底物生成产物的速率,包括苯丙胺N-脱甲基化产生的甲醛,1-苯基乙醇氧化产生的苯乙酮,环己烷羟基化产生的环己醇和环己烷羧醛甲酰化产生的环己烯, 2B4(Delta 2-27)和2B4(Delta 2-27)T302A。截短细胞色素中苏氨酸残基的置换在存在底物的情况下使过氧化物的形成增加了1.6到2.5倍,但导致苯丙胺(9倍),环己烷(4倍)和1的产物形成减少。 -苯乙醇(2倍)。与之形成鲜明对比的是,T302A突变体使环己烷甲醛的甲酰化增加了约10倍。基于这些发现和我们先前的证据,即醛的甲酰化是通过添加的H2O2来支持的,而不是通过人工氧化剂的支持,我们得出的结论是,过氧化铁是直接的氧供体。尚待确定的是,在涉及P450的许多其他氧化反应中,哪一种利用了这种物质,以及过氧-铁和类氧体-铁作为这种通用催化剂的众多同工型的替代氧化剂的程度。 [参考:48]

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