Wang G, Pincheira R, Zhang J T
Department of Physiology and Biophysics, University of Texas Medical Branch, Galveston, USA.
Eur J Biochem. 1998 Jul 15;255(2):383-90. doi: 10.1046/j.1432-1327.1998.2550383.x.
P-glycoprotein (Pgp) is a membrane-transport ATPase. It uses energy from ATP hydrolysis to transport pleiotropic cytotoxic drugs from inside to outside of cells. Thus, elevated expression of Pgp in cancer cells causes multidrug resistance. It is now known that the conformational state of Pgp changes during its catalytic cycle. However, how ATP hydrolysis relates to drug binding by Pgp is yet to be determined. In this study, we used limited trypsin digestion of Pgp in isolated inside-out membrane vesicles to investigate the effects of drugs on Pgp conformation and to determine the drug-bound conformational states of Pgp in the catalytic cycle. We found that (a) binding of vinblastine or verapamil alone can cause a conformational change in Pgp, but the change induced by the drug binding is different from that induced by nucleotide binding, (b) there may be at least two binding sites for Pgp substrates, one for drugs such as vinblastine and verapamil and the other for drugs such as colchicine and adriamycin, (c) the conformation of Pgp bound by ATP and vinblastine is different from the conformation bound by either one alone, and (d) the ADP-bound Pgp does not bind vinblastine. Based on these observations and our previous studies, we propose a model for drug binding and transport in the catalytic cycle of Pgp.
P-糖蛋白(Pgp)是一种膜转运ATP酶。它利用ATP水解产生的能量将多效性细胞毒性药物从细胞内转运到细胞外。因此,癌细胞中Pgp表达升高会导致多药耐药性。现已知道,Pgp的构象状态在其催化循环过程中会发生变化。然而,ATP水解与Pgp药物结合之间的关系尚待确定。在本研究中,我们对分离的内翻膜囊泡中的Pgp进行有限的胰蛋白酶消化,以研究药物对Pgp构象的影响,并确定催化循环中Pgp的药物结合构象状态。我们发现:(a)单独结合长春碱或维拉帕米可导致Pgp构象改变,但药物结合诱导的变化不同于核苷酸结合诱导的变化;(b)Pgp底物可能至少有两个结合位点,一个用于长春碱和维拉帕米等药物,另一个用于秋水仙碱和阿霉素等药物;(c)ATP和长春碱结合的Pgp构象不同于单独结合两者之一的构象;(d)结合ADP的Pgp不结合长春碱。基于这些观察结果和我们之前的研究,我们提出了一个Pgp催化循环中药物结合和转运的模型。