Williamson Gary, Aeberli Isabelle, Miguet Laurence, Zhang Ziding, Sanchez M-Belen, Crespy Vanessa, Barron Denis, Needs Paul, Kroon Paul A, Glavinas H, Krajcsi Peter, Grigorov Martin
Nestlé Research Center, Vers Chez Les Blanc, 1000 Lausanne 26, Switzerland.
Drug Metab Dispos. 2007 Aug;35(8):1262-8. doi: 10.1124/dmd.106.014241. Epub 2007 May 3.
The exporter ABCC2 (cMOAT, MRP2) is a membrane-bound protein on the apical side of enterocytes and hepatic biliary vessels that transports leukotriene C(4), glutathione, some conjugated bile salts, drugs, xenobiotics, and phytonutrients. The latter class includes quercetin, a bioactive flavonoid found in foods such as onions, apples, tea, and wine. There is no available three-dimensional (3D) structure of ABCC2. We have predicted the 3D structure by in silico modeling, showing that 3-[[3-[2-(7-chloroquinolin-2-yl)vinyl]phenyl]-(2-dimethylcarbamoylethylsulfanyl)methylsulfanyl] propionic acid (MK571) binds most tightly to the putative binding site, and then tested the computational prediction experimentally by measuring interaction with all quercetin monoglucuronides occurring in vivo (quercetin substituted with glucuronic acid at the 3-, 3'-, 4'-, and 7-hydroxyl groups). The 4'-O-beta-D-glucuronide is predicted in silico to interact most strongly and the 3-O-beta-D-glucuronide most weakly, and this prediction is supported experimentally using binding and competition assays on ABCC2-overexpressing baculovirus-infected Sf9 cells. To test the transport in situ, we examined the effect of two ABCC2 inhibitors, MK571 and cyclosporin A, on the transport into the media of quercetin glucuronides produced intracellularly by Caco2 cells. The inhibitors reduced the amount of all quercetin glucuronides in the media. The results show that the molecular model of ABCC2 agrees well with experimentally determined ABCC2-ligand interactions and, importantly, that the interaction of ABCC2 with quercetin glucuronides is dependent on the position and nature of substitution.
外排转运蛋白ABCC2(cMOAT,MRP2)是肠上皮细胞和肝胆小管顶端侧的一种膜结合蛋白,可转运白三烯C4、谷胱甘肽、一些结合型胆汁盐、药物、外源性物质和植物营养素。后者包括槲皮素,一种在洋葱、苹果、茶和葡萄酒等食物中发现的生物活性类黄酮。目前尚无ABCC2的三维(3D)结构。我们通过计算机模拟预测了其3D结构,结果表明3-[[3-[2-(7-氯喹啉-2-基)乙烯基]苯基]-(2-二甲基氨基甲酰基乙基硫烷基)甲基硫烷基]丙酸(MK571)与假定的结合位点结合最紧密,然后通过测量与体内所有槲皮素单葡萄糖醛酸苷(槲皮素在3-、3'-、4'-和7-羟基处被葡萄糖醛酸取代)的相互作用,对该计算预测进行了实验验证。计算机模拟预测4'-O-β-D-葡萄糖醛酸苷相互作用最强,3-O-β-D-葡萄糖醛酸苷最弱,在过表达ABCC