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Structural differences between soluble and membrane bound cytochrome P450s.可溶性细胞色素 P450 与膜结合细胞色素 P450 之间的结构差异。
J Inorg Biochem. 2012 Mar;108:150-8. doi: 10.1016/j.jinorgbio.2011.11.026. Epub 2011 Dec 14.
2
Detection of cytochrome P450 substrates by using a small-molecule droplet array on an NADH-immobilized solid surface.利用固定化 NADH 的小分子液滴阵列检测细胞色素 P450 底物。
Chembiochem. 2011 Dec 16;12(18):2748-52. doi: 10.1002/cbic.201100541. Epub 2011 Nov 7.
3
Homotropic allosteric regulation in monomeric mammalian glucokinase.单体哺乳动物葡萄糖激酶的同变变构调节。
Arch Biochem Biophys. 2012 Mar 15;519(2):103-11. doi: 10.1016/j.abb.2011.11.007. Epub 2011 Nov 15.
4
Investigation by site-directed mutagenesis of the role of cytochrome P450 2B4 non-active-site residues in protein-ligand interactions based on crystal structures of the ligand-bound enzyme.基于配体结合酶的晶体结构,通过定点突变研究细胞色素 P450 2B4 非活性部位残基在蛋白质-配体相互作用中的作用。
FEBS J. 2012 May;279(9):1607-20. doi: 10.1111/j.1742-4658.2011.08411.x. Epub 2011 Nov 25.
5
Evidence of CYP3A allosterism in vivo: analysis of interaction between fluconazole and midazolam.体内 CYP3A 变构作用的证据:氟康唑和咪达唑仑相互作用的分析。
Clin Pharmacol Ther. 2012 Mar;91(3):442-9. doi: 10.1038/clpt.2011.178. Epub 2011 Nov 2.
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P450(BM3) (CYP102A1): connecting the dots.P450(BM3) (CYP102A1):串联各个点。
Chem Soc Rev. 2012 Feb 7;41(3):1218-60. doi: 10.1039/c1cs15192d. Epub 2011 Oct 18.
7
Allosteric activation of cytochrome P450 3A4 by α-naphthoflavone: branch point regulation revealed by isotope dilution analysis.α-萘黄酮对细胞色素 P450 3A4 的别构激活:同位素稀释分析揭示的分支点调节。
Biochemistry. 2011 Nov 22;50(46):10041-51. doi: 10.1021/bi2013454. Epub 2011 Oct 28.
8
Regio- and stereoselectivity of P450-catalysed hydroxylation of steroids controlled by laboratory evolution.通过实验室进化控制 P450 催化的甾体羟化的区域和立体选择性。
Nat Chem. 2011 Aug 14;3(9):738-43. doi: 10.1038/nchem.1113.
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Structure and dynamics of the membrane-bound cytochrome P450 2C9.膜结合细胞色素 P450 2C9 的结构与动力学。
PLoS Comput Biol. 2011 Aug;7(8):e1002152. doi: 10.1371/journal.pcbi.1002152. Epub 2011 Aug 11.
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Membrane position of ibuprofen agrees with suggested access path entrance to cytochrome P450 2C9 active site.布洛芬的膜位与细胞色素 P450 2C9 活性位点建议的进入途径入口一致。
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一种新型的变构调节:单体蛋白中的功能协同作用。

A novel type of allosteric regulation: functional cooperativity in monomeric proteins.

机构信息

Department of Biochemistry, University of Illinois, Urbana, IL 61801, USA.

出版信息

Arch Biochem Biophys. 2012 Mar 15;519(2):91-102. doi: 10.1016/j.abb.2011.12.017. Epub 2012 Jan 8.

DOI:10.1016/j.abb.2011.12.017
PMID:22245335
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3329180/
Abstract

Cooperative functional properties and allosteric regulation in cytochromes P450 play an important role in xenobiotic metabolism and define one of the main mechanisms of drug-drug interactions. Recent experimental results suggest that ability to bind simultaneously two or more small organic molecules can be the essential feature of cytochrome P450 fold, and often results in rich and complex pattern of allosteric behavior. Manifestations of non-Michaelis kinetics include homotropic and heterotropic activation and inhibition effects depending on the stoichiometric ratios of substrate and effector, changes in the regio- and stereospecificity of catalytic transformations, and often give rise to the clinically important drug-drug interactions. In addition, functional response of P450 systems is modulated by the presence of specific and non-specific effector molecules, metal ions, membrane incorporation, formation of homo- and hetero-oligomers, and interactions with the protein redox partners. In this article we briefly overview the main factors contributing to the allosteric effects in cytochromes P450 with the main focus on the sources of cooperative behavior in xenobiotic metabolizing monomeric heme enzymes with their conformational flexibility and extremely broad substrate specificity. The novel mechanism of functional cooperativity in P450 enzymes does not require substantial binding cooperativity, rather it implies the presence of one or more binding sites with higher affinity than the single catalytically active site in the vicinity of the heme iron.

摘要

细胞色素 P450 的协同功能特性和别构调节在外源生物代谢中起着重要作用,并定义了药物相互作用的主要机制之一。最近的实验结果表明,同时结合两个或多个小分子有机分子的能力可能是细胞色素 P450 折叠的基本特征,并且通常会导致丰富而复杂的别构行为模式。非米氏动力学的表现包括同型激活和异型抑制效应,这取决于底物和效应物的化学计量比、催化转化的区域和立体特异性的变化,并且经常导致临床上重要的药物相互作用。此外,P450 系统的功能反应受到特定和非特定效应分子、金属离子、膜结合、同型和异型寡聚体形成以及与蛋白氧化还原伴侣相互作用的调节。在本文中,我们简要概述了导致细胞色素 P450 别构效应的主要因素,主要关注具有构象灵活性和极其广泛底物特异性的外源生物代谢单体血红素酶中协同行为的来源。P450 酶功能协同作用的新机制不需要实质性的结合协同性,而是意味着在靠近血红素铁的位置存在一个或多个比单个催化活性位点具有更高亲和力的结合位点。