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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Bimolecular fluorescence complementation analysis of cytochrome p450 2c2, 2e1, and NADPH-cytochrome p450 reductase molecular interactions in living cells.
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Bimolecular fluorescence complementation analysis of cytochrome p450 2c2, 2e1, and NADPH-cytochrome p450 reductase molecular interactions in living cells.

机译:在活细胞中细胞色素p450 2c2、2e1和NADPH-细胞色素p450还原酶分子相互作用的双分子荧光互补分析。

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Interactions between cytochromes P450 (P450s) and P450 reductase are required for enzymatic activity, and homo- or heterooligomerization of P450s may also be functionally important. Bimolecular fluorescence complementation (BiFC) was used to examine P450 interactions in a natural membrane context within living cells. BiFC detects protein interactions in living cells by reconstitution of a fluorescent protein from two fragments that are fused to the two interacting proteins. Nonspecific protein-protein interactions were detected if proteins were expressed at high levels. At low protein expression levels, homo-oligomerization of P450 2C2, but not P450 2E1, and interactions of these P450s with P450 reductase were detected by BiFC, consistent with interactions detected previously by fluorescence resonance emission transfer. Weak interaction of P450 2C2 with P450 2E1 and homooligomerization of P450 reductase was also detected by BiFC. Homo-oligomerization of the N-terminal P450 2C1 signal anchor sequence and interactions between the signal anchor and full-length P450 2C2 were detected, suggesting that homo-oligomerization of P450 2C2 is mediated by the signal anchor. However, interactions between the signal anchor and either P450 2E1 or P450 reductase were not detected by BiFC. Although high concentrations of the substrate lauric acid increased BiFC for both P450 2E1 and P450 2C2 with P450 reductase, the concentration dependence did not correlate with reported K(m) values. These results demonstrate that BiFC is an effective method to study the complex protein interactions that occur within the microsomal P450 system in living cells.
机译:细胞色素P450(P450)和P450还原酶之间的相互作用对于酶促活性是必需的,并且P450的均聚或杂聚也可能在功能上很重要。双分子荧光互补(BiFC)用于检查活细胞内天然膜环境中的P450相互作用。 BiFC通过从融合到两个相互作用蛋白的两个片段中重建荧光蛋白来检测活细胞中的蛋白相互作用。如果蛋白质高水平表达,则检测到非特异性蛋白质-蛋白质相互作用。在低蛋白表达水平下,BiFC检测到了P450 2C2的均聚,但未检测到P450 2E1的均聚,以及这些P450与P450还原酶的相互作用,这与先前通过荧光共振发射转移检测到的相互作用一致。 BiFC还检测到P450 2C2与P450 2E1的弱相互作用和P450还原酶的均聚。 N末端P450 2C1信号锚序列的均聚和信号锚与全长P450 2C2之间的相互作用被检测到,表明P450 2C2的均聚是由信号锚介导的。但是,BiFC未检测到信号锚与P450 2E1或P450还原酶之间的相互作用。尽管高浓度的底物月桂酸可通过P450还原酶增加P450 2E1和P450 2C2的BiFC,但浓度依赖性与报告的K(m)值无关。这些结果表明,BiFC是研究活细胞微粒体P450系统内发生的复杂蛋白质相互作用的有效方法。

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