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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Stereoselective Oxidation Kinetics of Deoxycholate in Recombinant and Microsomal CYP3A Enzymes: Deoxycholate 19-Hydroxylation Is an In Vitro Marker of CYP3A7 Activity
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Stereoselective Oxidation Kinetics of Deoxycholate in Recombinant and Microsomal CYP3A Enzymes: Deoxycholate 19-Hydroxylation Is an In Vitro Marker of CYP3A7 Activity

机译:重组和微粒体CYP3A酶中脱氧胆酸盐的立体选择性氧化动力学:脱氧胆酸盐19-羟基化是CYP3A7活性的体外标记

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摘要

The primary bile acids (BAs) synthesized from cholesterol in the liver are converted to secondary BAs by gut microbiota. It was recently disclosed that the major secondary BA, deoxycholate (DCA) species, is stereoselectively oxidized to tertiary BAs exclusively by CYP3A enzymes. This work subsequently investigated the in vitro oxidation kinetics of DCA at C-1 beta, C-3 beta, C-4 beta, C-5 beta, C-6 alpha, C-6 beta, and C-19 in recombinant CYP3A enzymes and naive enzymes in human liver microsomes (HLMs). The stereoselective oxidation of DCA fit well with Hill kinetics at 1-300 mu M in both recombinant CYP3A enzymes and pooled HLMs. With no contributions or trace contributions from CYP3A5, CYP3A7 favors oxidation at C-19, C-4 beta, C-6 alpha, C-3 beta, and C-1 beta, whereas CYP3A4 favors the oxidation at C-5 beta and C-6 beta compared with each other. Correlation between DCA oxidation and testosterone 6 beta-hydroxylation in 14 adult single-donor HLMs provided proofof-concept evidence that DCA 19-hydroxylation is an in vitro marker reaction for CYP3A7 activity, whereas oxidation at other sites represents mixed indicators for CYP3A4 and CYP3A7 activities. Deactivation caused by DCA-induced cytochrome P450-cytochrome P420 conversion, as shown by the spectral titrations of isolated CYP3A proteins, was observed when DCA levels were near or higher than the critical micelle concentration (about 1500 mu M). Unlike CYP3A4, CYP3A7 showed abnormally elevated activities at 500 and 750 mu M, which might be associated with an altered affinity for DCA multimers. The disclosed kinetic and functional roles of CYP3A isoforms in disposing of the gut bacteria-derived DCA may help in understanding the structural and functional mechanisms of CYP3A.
机译:由肝脏中的胆固醇合成的初级胆汁酸(BAS)通过肠道微生物肠被转化为副腺。最近公开了主要二级BA,脱氧胆酸盐(DCA)物种,其专门氧化为专门由CYP3A酶氧化成第三型群。该作品随后在C-1β,C-3β,C-4β,C-5β,C-6α,C-6β和C-19中研究了DCA的体外氧化动力学,重组CYP3A酶中的C-19和人肝微粒体(HLMS)中的幼稚酶。 DCA的立体选择性氧化在重组CYP3A酶中的1-300 mu m处与山脉动力学相适合。没有CYP3A5的贡献或追踪贡献,CYP3A7在C-19,C-4β,C-6α,C-3β和C-1β的氧化,而CYP3A4则有利于C-5β和C的氧化-6 beta彼此相比。 DCA氧化与睾酮6β-羟基在14个成年供体HLMS之间的相关性提供了DCA 19-羟基化的证据,即DCA 19-羟基化是CYP3A7活性的体外标记反应,而在其他部位的氧化是CYP3A4和CYP3A7活性的混合指标。当DCA水平接近或高于临界胶束浓度(约1500μm)时,观察到由DCA诱导的细胞色素P450-细胞色素P420转化率引起的DCA诱导的细胞色素P450-细胞色素P420转化率。与CYP3A4不同,CYP3A7在500和750μmM中显示出异常升高的活性,这可能与对DCA多方的改变的亲和力相关。所公开的CYP3A同种型在处理肠道细菌衍生的DCA中的公开的动力学和功能作用可能有助于理解CYP3A的结构和功能机制。

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    Sichuan Univ West China Sch Pharm Educ Minist Key Lab Drug Targeting &

    Drug Delivery Syst;

    Sichuan Univ West China Sch Pharm Educ Minist Key Lab Drug Targeting &

    Drug Delivery Syst;

    Sichuan Univ West China Sch Pharm Educ Minist Key Lab Drug Targeting &

    Drug Delivery Syst;

    Sichuan Univ West China Sch Pharm Educ Minist Key Lab Drug Targeting &

    Drug Delivery Syst;

    Sichuan Univ West China Sch Pharm Educ Minist Key Lab Drug Targeting &

    Drug Delivery Syst;

    Sichuan Univ West China Sch Pharm Educ Minist Key Lab Drug Targeting &

    Drug Delivery Syst;

    Sichuan Univ West China Sch Pharm Educ Minist Key Lab Drug Targeting &

    Drug Delivery Syst;

    Sichuan Univ West China Sch Pharm Educ Minist Key Lab Drug Targeting &

    Drug Delivery Syst;

    Univ Hawaii Ctr Canc Metabol Shared Resource Honolulu HI 96822 USA;

    Tianjin Inst Pharmaceut Res State Key Lab Drug Delivery Technol &

    Pharmacokin Tianjin Peoples R;

    Sichuan Univ West China Sch Pharm Educ Minist Key Lab Drug Targeting &

    Drug Delivery Syst;

    Univ Hawaii Ctr Canc Metabol Shared Resource Honolulu HI 96822 USA;

    Univ Calif Irvine Dept Mol Biol &

    Biochem Irvine CA 92697 USA;

    Sichuan Univ West China Sch Pharm Educ Minist Key Lab Drug Targeting &

    Drug Delivery Syst;

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  • 正文语种 eng
  • 中图分类 药理学;
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