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细胞色素P450 3A4(CYP3A4)的激活:细胞色素P450活性位点同时结合两种底物的证据。

Activation of CYP3A4: evidence for the simultaneous binding of two substrates in a cytochrome P450 active site.

作者信息

Shou M, Grogan J, Mancewicz J A, Krausz K W, Gonzalez F J, Gelboin H V, Korzekwa K R

机构信息

Laboratory of Molecular Carcinogenesis, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

Biochemistry. 1994 May 31;33(21):6450-5. doi: 10.1021/bi00187a009.

Abstract

A unique characteristic of the CYP3A subfamily of cytochrome P450 enzymes is their ability to be activated by certain compounds. It is reported that CYP3A4-catalyzed phenanthrene metabolism is activated by 7,8-benzoflavone and that 7,8-benzoflavone serves as a substrate for CYP3A4. Kinetic analyses of these two substrates show that 7,8-benzoflavone increases the Vmax of phenanthrene metabolism without changing the Km and that phenanthrene decreases the Vmax of 7,8-benzoflavone metabolism without increasing the Km. These results suggest that both substrates (or substrate and activator) are simultaneously present in the active site. Both compounds must have access to the active oxygen, since neither phenanthrene nor 7,8-benzoflavone can competitively inhibit the other substrate. These data provide the first evidence that two different molecules can be simultaneously bound to the same P450 active site. Additionally, structure-activity relationship studies were performed with derivatives of 7,8-benzoflavone structure. The effects of 13 different compounds on the regioselectivity of phenanthrene, chrysene, and benzo[a]pyrene metabolism were determined. Of the 13 compounds studied, 6 were activators, 2 were partial activators, and 5 were inhibitors. Analyses of the data suggest that (1) naphthalene substituted with a ketone in the 2-position can activate 3A4 and (2) the presence of an activator results in a narrower effective substrate binding site. Since the CYP3A enzymes are very important in drug metabolism, the possibility of activation, and autoactivation, must be considered when in vitro-in vivo correlations are made and when possible drug interactions are considered.

摘要

细胞色素P450酶CYP3A亚家族的一个独特特征是它们能够被某些化合物激活。据报道,CYP3A4催化的菲代谢被7,8-苯并黄酮激活,且7,8-苯并黄酮可作为CYP3A4的底物。对这两种底物的动力学分析表明,7,8-苯并黄酮增加了菲代谢的Vmax而不改变Km,而菲降低了7,8-苯并黄酮代谢的Vmax而不增加Km。这些结果表明两种底物(或底物与激活剂)同时存在于活性位点。两种化合物都必须能够接触到活性氧,因为菲和7,8-苯并黄酮都不能竞争性抑制另一种底物。这些数据首次证明了两种不同的分子可以同时结合到同一个P450活性位点。此外,还对7,8-苯并黄酮结构的衍生物进行了构效关系研究。测定了13种不同化合物对菲、芘和苯并[a]芘代谢区域选择性的影响。在所研究的13种化合物中,6种是激活剂,2种是部分激活剂,5种是抑制剂。数据分析表明:(1)2位被酮取代的萘可激活3A4;(2)激活剂的存在导致有效底物结合位点变窄。由于CYP3A酶在药物代谢中非常重要,因此在进行体外-体内相关性分析以及考虑可能的药物相互作用时,必须考虑激活和自激活的可能性。

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