Sharom Frances J, Lugo Miguel R, Eckford Paul D W
Department of Molecular and Cellular Biology, University of Guelph, Science Complex Room 2255, Guelph, Ontario, Canada.
J Bioenerg Biomembr. 2005 Dec;37(6):481-7. doi: 10.1007/s10863-005-9496-6.
The MDR1 P-glycoprotein, an ATP-binding cassette (ABC) superfamily member that functions as an ATP-driven drug efflux pump, has been linked to resistance of human tumors to multiple chemotherapeutic agents. P-glycoprotein binds and actively transports a large variety of hydrophobic drugs and peptides. P-glycoprotein in reconstituted proteoliposomes is also an outwardly directed flippase for membrane phospholipids and simple glycosphinglipids. This review focuses on recent advances in our understanding of P-glycoprotein structure and function, particularly through the use of fluorescence spectroscopic approaches. Progress is being made towards understanding the structure of the transporter, especially the spatial relationship between the two nucleotide-binding domains. Exploration of the P-glycoprotein catalytic cycle using vanadate-trapped complexes has revealed that drug transport likely takes place by concerted conformational changes linked to relaxation of a high energy intermediate. Low resolution mapping of the protein using fluorescence resonance energy transfer showed that both the H and R drug-binding sites are located within the cytoplasmic leaflet. Two drugs can bind to the R-site simultaneously, suggesting that the protein contains a large flexible binding region.
多药耐药蛋白1(MDR1)P-糖蛋白是ATP结合盒(ABC)超家族成员,作为一种ATP驱动的药物外排泵,与人类肿瘤对多种化疗药物的耐药性有关。P-糖蛋白能结合并主动转运多种疏水性药物和肽。重组蛋白脂质体中的P-糖蛋白也是膜磷脂和简单糖鞘脂的外向翻转酶。本综述重点关注我们在理解P-糖蛋白结构和功能方面的最新进展,特别是通过荧光光谱方法的应用。在理解转运蛋白的结构方面正在取得进展,尤其是两个核苷酸结合结构域之间的空间关系。使用钒酸盐捕获复合物对P-糖蛋白催化循环的探索表明,药物转运可能通过与高能中间体松弛相关的协同构象变化发生。利用荧光共振能量转移对该蛋白进行的低分辨率图谱分析表明,H和R药物结合位点均位于细胞质小叶内。两种药物可以同时结合到R位点,这表明该蛋白包含一个大的柔性结合区域。