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调节剂对人P-糖蛋白ATP酶活性及钒酸盐核苷酸捕获的影响。

Effect of modulators on the ATPase activity and vanadate nucleotide trapping of human P-glycoprotein.

作者信息

Shepard R L, Winter M A, Hsaio S C, Pearce H L, Beck W T, Dantzig A H

机构信息

Lilly Research Laboratories, Lilly Corporate Center, Indianapolis, IN 46285-0424, USA.

出版信息

Biochem Pharmacol. 1998 Sep 15;56(6):719-27. doi: 10.1016/s0006-2952(98)00212-3.

Abstract

P-Glycoprotein (Pgp) is responsible for the energy-dependent efflux of many natural product oncolytics. Overexpression of Pgp may result in multidrug resistance (MDR). Modulators can block Pgp efflux and sensitize multidrug resistant cells to these oncolytics. To study the interaction of modulators with Pgp, Pgp-ATPase activity was examined, using plasma membranes isolated from the multidrug-resistant cell line CEM/VLB100. A survey of modulators indicated that verapamil, trifluoperazine, and nicardipine stimulated ATPase activity by 1.3- to 1.8-fold, whereas two others, trimethoxybenzoylyohimbine (TMBY) and vindoline, had no effect. Further evaluation showed that TMBY completely blocked the stimulation by verapamil of ATPase activity by competitive inhibition, with a Ki of 2.1 microM. When the effects of these two modulators on the formation of the enzyme-nucleotide complex important in the catalytic cycle were examined, verapamil increased the amount of vanadate-trapped 8-azido-[alpha-32P]ATP bound to Pgp by two-fold, whereas TMBY had no effect. Moreover, TMBY blocked the verapamil stimulation of vanadate-8-azido-[alpha-32P]ATP. Together, these data indicate that verapamil and TMBY bind to Pgp at a common site or overlapping sites, but only verapamil results in enhanced Pgp-ATP hydrolysis and formation of the vanadate-nucleotide-enzyme complex.

摘要

P-糖蛋白(Pgp)负责许多天然产物溶瘤剂的能量依赖性外排。Pgp的过表达可能导致多药耐药(MDR)。调节剂可阻断Pgp外排并使多药耐药细胞对这些溶瘤剂敏感。为了研究调节剂与Pgp的相互作用,使用从多药耐药细胞系CEM/VLB100分离的质膜检测了Pgp-ATP酶活性。对调节剂的一项调查表明,维拉帕米、三氟拉嗪和尼卡地平可使ATP酶活性提高1.3至1.8倍,而另外两种药物三甲氧基苯甲酰育亨宾(TMBY)和长春多灵则无此作用。进一步评估表明,TMBY通过竞争性抑制完全阻断了维拉帕米对ATP酶活性的刺激,其抑制常数(Ki)为2.1微摩尔。当检测这两种调节剂对催化循环中重要的酶-核苷酸复合物形成的影响时,维拉帕米使与Pgp结合的钒酸盐捕获的8-叠氮基-[α-32P]ATP量增加了两倍,而TMBY则无此作用。此外,TMBY阻断了维拉帕米对钒酸盐-8-叠氮基-[α-32P]ATP的刺激。这些数据共同表明,维拉帕米和TMBY在一个共同位点或重叠位点与Pgp结合,但只有维拉帕米会导致Pgp-ATP水解增强以及钒酸盐-核苷酸-酶复合物的形成。

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