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光致变色剂作为蛋白质结构研究的工具:拉帕醇是细胞色素P450 3A4的光亲和配体。

Photochromic agents as tools for protein structure study: lapachenole is a photoaffinity ligand of cytochrome P450 3A4.

作者信息

Gartner Carlos A, Wen Bo, Wan Jiandi, Becker Ralph S, Jones Guilford, Gygi Steven P, Nelson Sidney D

机构信息

Department of Cell Biology, Harvard Medical School, 240 Longwood Avenue, Boston, Massachusetts 02115, USA.

出版信息

Biochemistry. 2005 Feb 15;44(6):1846-55. doi: 10.1021/bi049231z.

Abstract

Cytochrome P450 3A4 is a drug-metabolizing enzyme of extraordinarily broad substrate specificity. This quality imparts upon the enzyme special importance in understanding its determinants of activity and substrate recognition. Limited successes in P450 3A4 active-site structure studies have been achieved by use of mechanism-based inactivators and photoaffinity ligands. We report here the potential of photochromic agents, compounds with the ability to undergo light-induced, reversible reactions, to be used as effective photoaffinity ligands. Four such compounds of the chromene family were shown by ultraviolet and visible spectroscopy to undergo photoinduced rearrangements to highly conjugated and reactive products in buffered aqueous solution. While some of these intermediates were very long-lived (>12 h, photoactivated lapachenole), others existed for milliseconds in their opened forms (precocene I and 2,2-dimethyl-5,6-benzo-2H-chromene) and were observed by laser flash photolysis. Each of the tricyclic structures studied rapidly underwent Michael addition reactions with the test nucleophile glutathione upon irradiation to form single conjugated products. The smaller precocene I reacted more extensively to form multiple products. These attributes of the chromenes inspired testing of their potential to label cytochrome P450 3A4 in a light-dependent fashion. Access to the protein active site by lapachenole was demonstrated with the molecule's ability to competitively inhibit P450 3A4-mediated oxidative metabolism of midazolam with an IC(50) value of 71 microM. This inhibition became irreversible upon irradiation of the enzyme-ligand complex with ultraviolet light. These results clearly demonstrate that chromenes are effective photoaffinity reagents for the cytochrome P450 superfamily of enzymes and probably other proteins as well.

摘要

细胞色素P450 3A4是一种具有极其广泛底物特异性的药物代谢酶。这一特性赋予了该酶在理解其活性和底物识别决定因素方面的特殊重要性。通过使用基于机制的失活剂和光亲和配体,在P450 3A4活性位点结构研究中取得了有限的成功。我们在此报告光致变色剂(具有光诱导可逆反应能力的化合物)用作有效光亲和配体的潜力。通过紫外可见光谱表明,色烯家族的四种此类化合物在缓冲水溶液中会发生光诱导重排,生成高度共轭且具有反应性的产物。虽然其中一些中间体寿命很长(>12小时,光活化拉帕醇),但其他中间体以其开放形式存在毫秒级时间(早熟素I和2,2 - 二甲基 - 5,6 - 苯并 - 2H - 色烯),并通过激光闪光光解进行了观察。所研究的每种三环结构在照射后都能迅速与测试亲核试剂谷胱甘肽发生迈克尔加成反应形成单一共轭产物。较小的早熟素I反应更广泛,形成多种产物。色烯的这些特性激发了对其以光依赖方式标记细胞色素P450 3A4潜力的测试。拉帕醇能够竞争性抑制咪达唑仑的P450 3A4介导的氧化代谢,IC(50)值为71 microM,证明其可进入蛋白质活性位点。在用紫外光照射酶 - 配体复合物后,这种抑制作用变得不可逆。这些结果清楚地表明,色烯是细胞色素P450酶超家族以及可能其他蛋白质的有效光亲和试剂。

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