Omata Y, Friedman F K
Laboratory of Molecular Carcinogenesis, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892.
Biochemistry. 1992 Sep 22;31(37):8862-7. doi: 10.1021/bi00152a024.
A monoclonal antibody (MAb) to phenobarbital-induced rat cytochrome P450b was used to study the interaction of the substrate benzphetamine (Bz) with cytochromes P450 in liver microsomes. Binding of Bz to liver microsomes from phenobarbital-treated rats was monitored by the substrate-induced type I spectral change. The MAb maximally inhibited this spectral change by 49%, providing a probe to distinguish MAb-specific P450b from other Bz-binding P450s. Thermodynamic parameters of the interaction were determined in the absence and presence of MAb. The MAb did not influence the spin-state equilibrium of substrate-free P450b, but it increased the low spin content of substrate-bound P450b. The MAb also decreased the affinity of both high and low spin P450b for Bz. The temperature dependence of the Bz-binding interactions revealed a transition near 20 degrees C. Fluorescence polarization measurements of the membrane probe 1,6-diphenyl-1,3,5-hexatriene also revealed a transition at this temperature. The MAb comparably inhibited Bz binding to high spin P450b in the low and high temperature regions, whereas MAb inhibition of Bz binding to low spin P450b was greater in the low temperature region than in the high temperature region. These results indicate temperature-dependent changes in membrane structure that modulate both Bz binding to P450b and MAb-P450b-Bz interactions. These results also demonstrate the utility of MAbs for evaluating P450-substrate binding microequilibria of MAb-specific P450s in the presence of other P450s while in the natural membrane environment of the endoplasmic reticulum.
一种针对苯巴比妥诱导的大鼠细胞色素P450b的单克隆抗体(MAb)被用于研究底物苄非他明(Bz)与肝微粒体中细胞色素P450的相互作用。通过底物诱导的I型光谱变化监测Bz与苯巴比妥处理大鼠的肝微粒体的结合。该单克隆抗体最大程度地抑制了这种光谱变化的49%,提供了一种将单克隆抗体特异性的P450b与其他Bz结合的P450区分开来的探针。在不存在和存在单克隆抗体的情况下测定相互作用的热力学参数。单克隆抗体不影响无底物P450b的自旋态平衡,但增加了与底物结合的P450b的低自旋含量。单克隆抗体还降低了高自旋和低自旋P450b对Bz的亲和力。Bz结合相互作用的温度依赖性显示在20℃附近有一个转变。膜探针1,6-二苯基-1,3,5-己三烯的荧光偏振测量也显示在该温度有一个转变。单克隆抗体在低温和高温区域对高自旋P450b的Bz结合抑制程度相当,而单克隆抗体对低自旋P450b的Bz结合抑制在低温区域比在高温区域更大。这些结果表明膜结构的温度依赖性变化调节了Bz与P450b的结合以及单克隆抗体-P450b-Bz相互作用。这些结果还证明了单克隆抗体在评估在内质网的天然膜环境中存在其他P450时单克隆抗体特异性P450的P450-底物结合微平衡方面的效用。