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用双底物模型评估非典型细胞色素P450动力学:多个底物可同时结合到细胞色素P450活性位点的证据。

Evaluation of atypical cytochrome P450 kinetics with two-substrate models: evidence that multiple substrates can simultaneously bind to cytochrome P450 active sites.

作者信息

Korzekwa K R, Krishnamachary N, Shou M, Ogai A, Parise R A, Rettie A E, Gonzalez F J, Tracy T S

机构信息

Center for Clinical Pharmacology, University of Pittsburgh, Pennsylvania 15217, USA.

出版信息

Biochemistry. 1998 Mar 24;37(12):4137-47. doi: 10.1021/bi9715627.

Abstract

Some cytochrome P450 catalyzed reactions show atypical kinetics, and these kinetic processes can be grouped into five categories: activation, autoactivation, partial inhibition, substrate inhibition, and biphasic saturation curves. A two-site model in which the enzyme can bind two substrate molecules simultaneously is presented which can be used to describe all of these observed kinetic properties. Sigmoidal kinetic characteristics were observed for carbamazepine metabolism by CYP3A4 and naphthalene metabolism by CYPs 2B6, 2C8, 2C9, and 3A5 as well as dapsone metabolism by CYP2C9. Naphthalene metabolism by CYP3A4 and naproxen metabolism by CYP2C9 demonstrated nonhyperbolic enzyme kinetics suggestive of a low Km, low Vmax component for the first substrate molecule and a high Km, high Vmax component for the second substrate molecule. 7, 8-Benzoflavone activation of phenanthrene metabolism by CYP3A4 and dapsone activation of flurbiprofen and naproxen metabolism by CYP2C9 were also observed. Furthermore, partial inhibition of 7, 8-benzoflavone metabolism by phenanthrene was observed. These results demonstrate that various P450 isoforms may exhibit atypical enzyme kinetics depending on the substrate(s) employed and that these results may be explained by a model which includes simultaneous binding of two substrate molecules in the active site.

摘要

一些细胞色素P450催化的反应呈现出非典型动力学,这些动力学过程可分为五类:激活、自动激活、部分抑制、底物抑制和双相饱和曲线。本文提出了一种酶可同时结合两个底物分子的双位点模型,该模型可用于描述所有这些观察到的动力学特性。观察到CYP3A4催化卡马西平代谢、CYPs 2B6、2C8、2C9和3A5催化萘代谢以及CYP2C9催化氨苯砜代谢呈现S形动力学特征。CYP3A4催化萘代谢以及CYP2C9催化萘普生代谢表现出非双曲线酶动力学特征,提示第一个底物分子具有低Km、低Vmax组分,第二个底物分子具有高Km、高Vmax组分。还观察到CYP3A4催化菲代谢的7,8-苯并黄酮激活以及CYP2C9催化氟比洛芬和萘普生代谢的氨苯砜激活。此外,观察到菲对7,8-苯并黄酮代谢的部分抑制作用。这些结果表明,根据所使用的底物不同,各种P450同工酶可能表现出非典型酶动力学,并且这些结果可以用一个在活性位点同时结合两个底物分子的模型来解释。

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