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Immobilized Cytochrome P450 for Monitoring of P450-P450 Interactions and Metabolism

机译:固定化细胞色素P450用于监测P450-P450相互作用和代谢

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摘要

Cytochrome P450 (P450) protein-protein interactions have been shown to alter their catalytic activity. Furthermore, these interactions are isoform specific and can elicit activation, inhibition, or no effect on enzymatic activity. Studies show that these effects are also dependent on the protein partner cytochrome P450 reductase (CPR) and the order of protein addition to purified reconstituted enzyme systems. In this study, we use controlled immobilization of P450s to a gold surface to gain a better understanding of P450-P450 interactions between three key drug-metabolizing isoforms (CYP2C9, CYP3A4, and CYP2D6). Molecular modeling was used to assess the favorability of homomeric/heteromeric P450 complex formation. P450 complex formation in vitro was analyzed in real time utilizing surface plasmon resonance. Finally, the effects of P450 complex formation were investigated utilizing our immobilized platform and reconstituted enzyme systems. Molecular modeling shows favorable binding of CYP2C9-CPR, CYP2C9-CYP2D6, CYP2C9-CYP2C9, and CYP2C9-CYP3A4, in rank order. KD values obtained via surface plasmon resonance show strong binding, in the nanomolar range, for the above pairs, with CYP2C9-CYP2D6 yielding the lowest KD, followed by CYP2C9-CYP2C9, CYP2C9-CPR, and CYP2C9-CYP3A4. Metabolic incubations show that immobilized CYP2C9 metabolism was activated by homomeric complex formation. CYP2C9 metabolism was not affected by the presence of CYP3A4 with saturating CPR concentrations. CYP2C9 metabolism was activated by CYP2D6 at saturating CPR concentrations in solution but was inhibited when CYP2C9 was immobilized. The order of addition of proteins (CYP2C9, CYP2D6, CYP3A4, and CPR) influenced the magnitude of inhibition for CYP3A4 and CYP2D6. These results indicate isoform-specific P450 interactions and effects on P450-mediated metabolism.
机译:细胞色素P450(P450)蛋白质-蛋白质相互作用已显示可改变其催化活性。此外,这些相互作用是同工型特异性的,可以引起活化,抑制或对酶活性没有影响。研究表明,这些作用还取决于蛋白质伴侣细胞色素P450还原酶(CPR)和蛋白质向纯化重组酶系统中添加的顺序。在本研究中,我们使用P450的受控固定在金表面上,以更好地理解三种关键的药物代谢同工型(CYP2C9,CYP3A4和CYP2D6)之间的P450-P450相互作用。使用分子建模来评估同聚/异聚P450复合物形成的有利性。利用表面等离振子共振实时分析了体外P450复合物的形成。最后,利用我们的固定平台和重组酶系统研究了P450复合物形成的影响。分子建模显示CYP2C9-CPR,CYP2C9-CYP2D6,CYP2C9-CYP2C9和CYP2C9-CYP3A4的依序排列具有良好的结合性。通过表面等离振子共振获得的KD值在上述摩尔对中显示出在纳摩尔范围内的强结合,其中CYP2C9-CYP2D6产生最低的KD,其次是CYP2C9-CYP2C9,CYP2C9-CPR和CYP2C9-CYP3A4。代谢培养显示固定化的CYP2C9代谢被同质复合物形成激活。 CYP3A4的饱和CPR浓度不会影响CYP2C9的代谢。在溶液中饱和CPR浓度下,CYP2D6激活CYP2C9的代谢,但是当固定CYP2C9时,其被抑制。蛋白质(CYP2C9,CYP2D6,CYP3A4和CPR)的添加顺序影响了CYP3A4和CYP2D6的抑制程度。这些结果表明同工型特异性P450相互作用和对P450介导的代谢的影响。

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