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CYP2C9底物特异性的酶学决定因素:B'-C环残基在为华法林结合提供π-堆积锚定位点中的作用。

Enzymatic determinants of the substrate specificity of CYP2C9: role of B'-C loop residues in providing the pi-stacking anchor site for warfarin binding.

作者信息

Haining R L, Jones J P, Henne K R, Fisher M B, Koop D R, Trager W F, Rettie A E

机构信息

Department of Medicinal Chemistry, University of Washington, Seattle 98195, USA.

出版信息

Biochemistry. 1999 Mar 16;38(11):3285-92. doi: 10.1021/bi982161+.

Abstract

Previous modeling efforts have suggested that coumarin ligand binding to CYP2C9 is dictated by electrostatic and pi-stacking interactions with complementary amino acids of the protein. In this study, analysis of a combined CoMFA-homology model for the enzyme identified F110 and F114 as potential hydrophobic, aromatic active-site residues which could pi-stack with the nonmetabolized C-9 phenyl ring of the warfarin enantiomers. To test this hypothesis, we introduced mutations at key residues located in the putative loop region between the B' and C helices of CYP2C9. The F110L, F110Y, V113L, and F114L mutants, but not the F114Y mutant, expressed readily, and the purified proteins were each active in the metabolism of lauric acid. The V113L mutant metabolized neither (R)- nor (S)-warfarin, and the F114L mutant alone displayed altered metabolite profiles for the warfarin enantiomers. Therefore, the effect of the F110L and F114L mutants on the interaction of CYP2C9 with several of its substrates as well as the potent inhibitor sulfaphenazole was chosen for examination in further detail. For each substrate examined, the F110L mutant exhibited modest changes in its kinetic parameters and product profiles. However, the F114L mutant altered the metabolite ratios for the warfarin enantiomers such that significant metabolism occurred for the first time on the putative C-9 phenyl anchor, at the 4'-position of (R)- and (S)-warfarin. In addition, the Vmax for (S)-warfarin 7-hydroxylation decreased 4-fold and the Km was increased 13-fold by the F114L mutation, whereas kinetic parameters for lauric acid metabolism, a substrate which cannot interact with the enzyme by a pi-stacking mechanism, were not markedly affected by this mutation. Finally, the F114L mutant effected a greater than 100-fold increase in the Ki for inhibition of CYP2C9 activity by sulfaphenazole. These data support a role for B'-C helix loop residues F114 and V113 in the hydrophobic binding of warfarin to CYP2C9, and are consistent with pi-stacking to F114 for certain aromatic ligands.

摘要

先前的建模研究表明,香豆素配体与CYP2C9的结合取决于与该蛋白质互补氨基酸的静电和π-堆积相互作用。在本研究中,对该酶的CoMFA-同源性组合模型分析确定F110和F114是潜在的疏水、芳香族活性位点残基,它们可与华法林对映体未代谢的C-9苯环形成π-堆积。为了验证这一假设,我们在CYP2C9的B'和C螺旋之间假定的环区域中的关键残基处引入了突变。F110L、F110Y、V113L和F114L突变体易于表达,但F114Y突变体不易表达,纯化后的蛋白质均具有月桂酸代谢活性。V113L突变体既不代谢(R)-也不代谢(S)-华法林,单独的F114L突变体对华法林对映体的代谢物谱有改变。因此,我们选择进一步详细研究F110L和F114L突变体对CYP2C9与其几种底物以及强效抑制剂磺胺苯吡唑相互作用的影响。对于所检测的每种底物,F110L突变体的动力学参数和产物谱均有适度变化。然而,F114L突变体改变了华法林对映体的代谢物比例,使得在假定的C-9苯环锚定处首次发生显著代谢,即在(R)-和(S)-华法林的4'-位。此外,F114L突变使(S)-华法林7-羟化的Vmax降低4倍,Km增加13倍,而月桂酸代谢的动力学参数(月桂酸是一种不能通过π-堆积机制与该酶相互作用的底物)并未受到该突变的显著影响。最后,F114L突变体使磺胺苯吡唑抑制CYP2C9活性的Ki增加了100倍以上。这些数据支持B'-C螺旋环残基F114和V113在华法林与CYP2C9的疏水结合中起作用,并且与某些芳香族配体与F114形成π-堆积一致。

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