Tamai I, Safa A R
Department of Medicine, University of Chicago, Illinois 60637.
J Biol Chem. 1991 Sep 5;266(25):16796-800.
It is believed that P-glycoprotein (P-gp) is an energy-dependent drug efflux pump responsible for decreased drug accumulation in multidrug resistant (MDR) cells. In this study, we investigated whether azidopine, a photoactive dihydropyridine calcium channel blocker, is transported by P-gp in MDR Chinese hamster lung cells, DC-3F/VCRd-5L, and whether its binding site(s) on P-gp are distinct from those of Vinca alkaloids and cyclosporins. The efflux of azidopine from MDR cells was energy-dependent and inhibited by the cytotoxic agent vinblastine (VBL). Cyclosporin A (CsA), a modulator of MDR, also increased azidopine accumulation in MDR cells by decreasing the energy-dependent efflux of azidopine. P-gp in these cells was the only protein specifically bound to [3H]azidopine in photoaffinity experiments. The specific photoaffinity labeling of P-gp by [3H]azidopine was inhibited by CsA, SDZ 33-243, nonradioactive azidopine, and VBL with median concentrations (IC50) of 0.5, 0.62, 1.7, and 25 microM, respectively. The equilibrium binding of azidopine to plasma membranes of MDR variant DC-3F/VCRd-5L cells showed a single class of specific binding sites having a dissociation constant of 1.20 microM and a maximum binding capacity of 4.47 nmol/mg of protein. Kinetic analysis indicated that the inhibitory effect of VBL and CsA on azidopine binding to plasma membranes of MDR cells was noncompetitive, indicating that azidopine binds to P-gp at a binding site(s) different from the binding site(s) of these drugs.
据信,P-糖蛋白(P-gp)是一种能量依赖性药物外排泵,负责多药耐药(MDR)细胞中药物积累的减少。在本研究中,我们调查了光活性二氢吡啶钙通道阻滞剂叠氮平是否由MDR中国仓鼠肺细胞DC-3F/VCRd-5L中的P-gp转运,以及其在P-gp上的结合位点是否与长春花生物碱和环孢菌素的结合位点不同。叠氮平从MDR细胞中的外排是能量依赖性的,并受到细胞毒性药物长春碱(VBL)的抑制。多药耐药调节剂环孢素A(CsA)也通过减少叠氮平的能量依赖性外排来增加其在MDR细胞中的积累。在光亲和实验中,这些细胞中的P-gp是唯一与[3H]叠氮平特异性结合的蛋白质。[3H]叠氮平对P-gp的特异性光亲和标记受到CsA、SDZ 33-243、非放射性叠氮平和VBL的抑制,其半数抑制浓度(IC50)分别为0.5、0.62、1.7和25 microM。叠氮平与MDR变体DC-3F/VCRd-5L细胞的质膜的平衡结合显示出一类特异性结合位点,其解离常数为1.20 microM,最大结合容量为4.47 nmol/mg蛋白质。动力学分析表明,VBL和CsA对叠氮平与MDR细胞质膜结合的抑制作用是非竞争性的,表明叠氮平在与这些药物不同的结合位点与P-gp结合。