Fitscher B A, Ehehalt R, Jochims C, Pohl J, Herrmann T, Stremmel W
Department of Internal Medicine, University Hospital, University of Heidelberg, Bergheimer Str. 58, D-69115 Heidelberg, Germany.
Eur J Med Res. 2000 Dec 29;5(12):517-22.
Aim of the present study was to establish a cell system to study the physiological function of human MDR3 P-glycoprotein in cellular phosphatidylcholine (PC) secretion. MDR3 cDNA was expressed in HeLa cells using the tet-off system together with a luciferase reporter gene. MDR3 Pgp expression was turned on upon removal of doxycycline as shown by Western blot analysis. Immunohistochemistry using a specific anti human MDR3 Pgp antibody revealed a prominent staining of MDR3 Pgp covering the cytoplasm and the area of the plasma membrane. In presence of doxycycline MDR3 Pgp expression was turned off. For analysis of PC secretory activity, MDR3 Pgp expressing and non-expressing cells as well as control HeLa cells with low endogenous MDR3 were preincubated with [(3)H]choline for synthesis of cellular [(3)H]PC. Cells were then incubated for 2 h in media with 0-4 mM taurocholate (TC) and release of cellular [(3)H]PC was recorded. [(3)H]PC secretion was observed in presence of TC without impairing cell viability. There was a significant increase in [(3)H]PC excretion in MDR3 Pgp expressing cells compared to non-expressing controls (e.g. 4.5 fold at 4 mM TC), revealing a high efficiency of transport activity (turnover). From the data it is concluded that the MDR3 Pgp expressing cell system under control of a doxycycline responsive promotor is functionally active and provides a tool to further study MDR3 Pgp mediated transport.
本研究的目的是建立一个细胞系统,以研究人多药耐药蛋白3(MDR3)P-糖蛋白在细胞磷脂酰胆碱(PC)分泌中的生理功能。利用四环素调控系统将MDR3互补DNA(cDNA)与荧光素酶报告基因一起在人宫颈癌HeLa细胞中表达。如蛋白质免疫印迹分析所示,去除强力霉素后,MDR3 P-糖蛋白表达开启。使用特异性抗人MDR3 P-糖蛋白抗体进行免疫组织化学分析显示,MDR3 P-糖蛋白在细胞质和质膜区域有明显染色。存在强力霉素时,MDR3 P-糖蛋白表达关闭。为分析PC分泌活性,将表达MDR3 P-糖蛋白的细胞、不表达MDR3 P-糖蛋白的细胞以及内源性MDR3水平较低的对照HeLa细胞先用[³H]胆碱预孵育,以合成细胞内的[³H]PC。然后将细胞在含有0 - 4 mM牛磺胆酸盐(TC)的培养基中孵育2小时,并记录细胞内[³H]PC的释放情况。在存在TC的情况下观察到[³H]PC分泌,且不影响细胞活力。与不表达MDR3 P-糖蛋白的对照细胞相比,表达MDR3 P-糖蛋白的细胞中[³H]PC排泄量显著增加(例如在4 mM TC时增加4.5倍),表明转运活性(周转率)很高。从这些数据可以得出结论,在强力霉素响应启动子控制下的表达MDR3 P-糖蛋白的细胞系统功能活跃,为进一步研究MDR3 P-糖蛋白介导的转运提供了一个工具。