首页> 外文期刊>Journal of the American Chemical Society >Gauging the relative oxidative powers of compound I, ferric-hydroperoxide, and the ferric-hydrogen peroxide species of cytochrome P450 toward C-H hydroxylation of a radical clock substrate
【24h】

Gauging the relative oxidative powers of compound I, ferric-hydroperoxide, and the ferric-hydrogen peroxide species of cytochrome P450 toward C-H hydroxylation of a radical clock substrate

机译:测量化合物I,氢过氧化铁和细胞色素P450的过氧化铁氢物种对自由基钟底物的C-H羟基化的相对氧化能力

获取原文
获取原文并翻译 | 示例
       

摘要

Density functional calculations were performed in response to the controversies regarding the identity of the oxidant species in cytochrome P450. The calculations were used to gauge the relative C-H hydroxylation reactivity of three potential oxidant species of the enzyme, the high-valent oxo-iron species Compound I (Cpd I), the ferric hydroperoxide Compound 0 (Cpd 0), and the ferric-hydrogen peroxide complex Fe(H2O2). The results for the hydroxylation of a radical probe substrate, 1, show the following trends: (a) Cpd I is the most reactive species; in its presence the other two reagents will be silent. (b) In the absence of Cpd 1, substrate oxidation by Cpd 0 and Fe(H2O2) will take place via a stepwise mechanism that involves initial O-O homolysis followed by H-abstraction from 1. (c) Cpd 0 will undergo mostly porphyrin hydroxylation and only similar to 15% of substrate oxidation producing mostly the rearranged alcohol, 3 (Scheme 2). (d) Fe(H2O2) will generate mostly free hydrogen peroxide (uncoupling). A small fraction will perform substrate oxidation and lead mostly to 3. Reactivity probes for these reagents are kinetic isotope effect (KIE) and the product ratio of unrearranged to rearranged alcohols, [2/3]. Thus, for substrate oxidation by Cpd 0 or Fe(H2O2) KIE will be small, similar to 2, while Clod I will have large KIE values. Typically both Cpd 0 and Fe(H2O2) Will lead to a (2/3) ratio < 1, while Cpd I will lead to ratios > 1. In addition, the product isotope effect (KIE2/KIE3 not equal 1) is expected from the reactivity of Cpd 1.
机译:响应于有关细胞色素P450中氧化剂种类同一性的争议,进行了密度函数计算。该计算用于评估该酶的三种潜在氧化剂,高价含氧铁物种化合物I(Cpd I),氢过氧化铁化合物0(Cpd 0)和氢铁的相对CH羟基化反应性过氧化物配合物Fe(H2O2)。自由基探针底物1的羟基化结果显示以下趋势:(a)Cpd I是反应性最高的物质;在它的存在下,其他两种试剂将保持沉默。 (b)在没有Cpd 1的情况下,Cpd 0和Fe(H2O2)的底物氧化将通过逐步机制进行,该机制涉及初始OO均质化,然后从1吸氢。(c)Cpd 0将主要经历卟啉羟基化并且仅与15%的底物氧化相似,主要产生重排的3醇(方案2)。 (d)Fe(H2O2)将主要产生游离的过氧化氢(解偶联)。一小部分会进行底物氧化,并主要导致3。这些试剂的反应探针是动力学同位素效应(KIE)和未重排与重排的醇的产物比率[2/3]。因此,对于Cpd 0或Fe(H2O2)的底物氧化,KIE很小,类似于2,而Clod I的KIE值很大。通常,Cpd 0和Fe(H2O2)都会导致(2/3)比率<1,而Cpd I会导致比率>1。此外,预期从以下方面可以得出产物同位素效应(KIE2 / KIE3不等于1) Cpd 1的反应性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号