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细胞色素P450 3A4(CYP3A4)介导的卡马西平(CBZ)代谢:形成卡马西平-细胞色素P450 3A4共价加合物并改变酶动力学特征。

CYP3A4-Mediated carbamazepine (CBZ) metabolism: formation of a covalent CBZ-CYP3A4 adduct and alteration of the enzyme kinetic profile.

作者信息

Kang Ping, Liao Mingxiang, Wester Michael R, Leeder J Steven, Pearce Robin E, Correia Maria Almira

机构信息

Department of Cellular & Molecular Pharmacology, Liver Center, University of California, San Francisco, 600 16th Street N572F, San Francisco, CA 94158-2280, USA.

出版信息

Drug Metab Dispos. 2008 Mar;36(3):490-9. doi: 10.1124/dmd.107.016501. Epub 2007 Dec 20.

Abstract

Carbamazepine (CBZ) is a widely prescribed anticonvulsant whose use is often associated with idiosyncratic hypersensitivity. Sera of CBZ-hypersensitive patients often contain anti-CYP3A antibodies, including those to a CYP3A23 K-helix peptide that is also modified during peroxidative CYP3A4 heme-fragmentation. We explored the possibility that cytochromes P450 (P450s) such as CYP3A4 bioactivate CBZ to reactive metabolite(s) that irreversibly modify the P450 protein. Such CBZ-P450 adducts, if stable in vivo, could engender corresponding serum P450 autoantibodies. Incubation with CBZ not only failed to inactivate functionally reconstituted, purified recombinant CYP3A4 or CYP3A4 Supersomes in a time-dependent manner, but the inclusion of CBZ (0-1 mM) also afforded a concentration-dependent protection to CYP3A4 from inactivation by NADPH-induced oxidative uncoupling. Incubation of CYP3A4 Supersomes with (3)H-CBZ resulted in its irreversible binding to CYP3A4 protein with a stoichiometry of 1.58 +/- 0.15 pmol (3)H-CBZ bound/pmol CYP3A4. Inclusion of glutathione (1.5 mM) in the incubation reduced this level to 1.09. Similar binding (1.0 +/- 0.4 pmol (3)H-CBZ bound/pmol CYP3A4) was observed after (3)H-CBZ incubation with functionally reconstituted, purified recombinant CYP3A4(His)(6). The CBZ-modified CYP3A4 retained its functional activity albeit at a reduced level, but its testosterone 6beta-hydroxylase kinetics were altered from sigmoidal (a characteristic profile of substrate cooperativity) to near-hyperbolic (Michaelis-Menten) type, suggesting that CBZ may have modified CYP3A4 within its active site.

摘要

卡马西平(CBZ)是一种广泛使用的抗惊厥药,其使用常与特异质性超敏反应相关。CBZ超敏患者的血清中常含有抗CYP3A抗体,包括针对CYP3A23 K螺旋肽的抗体,该肽在过氧化物酶介导的CYP3A4血红素片段化过程中也会发生修饰。我们探讨了细胞色素P450(P450s)如CYP3A4将CBZ生物活化成反应性代谢物从而不可逆地修饰P450蛋白的可能性。如果这种CBZ - P450加合物在体内稳定,可能会产生相应的血清P450自身抗体。与CBZ孵育不仅未能以时间依赖性方式使功能重组、纯化的重组CYP3A4或CYP3A4微粒体失活,而且加入CBZ(0 - 1 mM)还能以浓度依赖性方式保护CYP3A4免受NADPH诱导的氧化解偶联作用导致的失活。用(3)H - CBZ孵育CYP3A4微粒体导致其与CYP3A4蛋白不可逆结合,化学计量比为1.58±0.15 pmol(3)H - CBZ结合/pmol CYP3A4。孵育体系中加入谷胱甘肽(1.5 mM)可使该水平降至1.09。用(3)H - CBZ孵育功能重组、纯化的重组CYP3A4(His)(6)后观察到类似的结合情况(1.0±0.4 pmol(3)H - CBZ结合/pmol CYP3A4)。CBZ修饰的CYP3A4尽管活性水平降低但其仍保留功能活性,但其睾酮6β - 羟化酶动力学从S形(底物协同性的特征曲线)变为接近双曲线形(米氏动力学)类型,这表明CBZ可能在其活性位点内修饰了CYP3A4。

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