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首页> 外文期刊>Molecular membrane biology >Flow cytometric monitoring of multidrug drug resistance protein 1 (MRP1/ABCC1) -mediated transport of 2',7'-bis-(3-carboxypropyl)-5-(and-6)- carboxyfluorescein (BCPCF) into human erythrocyte membrane inside-out vesicles.
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Flow cytometric monitoring of multidrug drug resistance protein 1 (MRP1/ABCC1) -mediated transport of 2',7'-bis-(3-carboxypropyl)-5-(and-6)- carboxyfluorescein (BCPCF) into human erythrocyte membrane inside-out vesicles.

机译:流式细胞仪监测多药耐药蛋白1(MRP1 / ABCC1)介导的2',7'-双-(3-羧丙基)-5-(和-6)-羧基荧光素(BCPCF)向人红细胞膜内部的转运出囊泡。

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摘要

The presence of human multidrug resistance protein 1 (MRP1/ABCC1) in the human erythrocyte membrane is well established. In the present study, flow cytometric monitoring is introduced to identify MRP1 as the main transporter of 2',7'-bis-(3-carboxypropyl)-5-(and-6)-carboxyfluorescein (BCPCF) in the erythrocyte membrane and to facilitate inhibition and kinetic studies of MRP1-mediated transport. The ATP-dependent transport of BCPCF into human erythrocyte inside-out vesicles and, for comparison, into MRP1-expressing Sf9 cell membrane inside-out vesicles were studied. The MRP1-specific monoclonal antibody, QCRL-3 and the MRP1 inhibitor, MK-571 strongly decreased the uptake of BCPCF into both erythrocyte and MRP1-expressing Sf9 cell membrane inside-out vesicles. The inhibition profiles of cyclosporin A, verapamil, benzbromarone, and probenecid in erythrocyte membrane vesicles were typical for MRP1-mediated transport. Furthermore, kinetic constants K(m) and V(max) of BCPCF transport into erythrocyte membrane inside-out vesicles were determined in the absence and in the presence of selected inhibitors (MK-571, cyclosporin A, benzbromarone and verapamil). The presented results identified MRP1 as the major transporter of BCPCF in the human erythrocyte membrane and showed for the first time that the active transport of fluorescent substrate into inside-out vesicles can be monitored by flow cytometry.
机译:人体红细胞膜中人类多药抗性蛋白1(MRP1 / ABCC1)的存在已得到公认。在本研究中,引入流式细胞术监测以鉴定MRP1是红细胞膜中2',7'-双-(3-羧丙基)-5-(和-6)-羧基荧光素(BCPCF)的主要转运蛋白,促进MRP1介导的转运的抑制和动力学研究。研究了BCPCF ATP依赖性转运进入人红细胞由内而外的囊泡,并比较了其向表达MRP1的Sf9细胞膜由内而外的囊泡的能力。 MRP1特异性单克隆抗体QCRL-3和MRP1抑制剂MK-571大大降低了BCPCF对红细胞和表达MRP1的Sf9细胞膜内外囊泡的摄取。 MRP1介导的运输中典型的环孢菌素A,维拉帕米,苯溴马隆和丙磺舒在红细胞膜囊泡中的抑制特性。此外,在不存在和存在选定抑制剂(MK-571,环孢菌素A,苯溴马隆和维拉帕米)的情况下,确定了BCPCF转运至红细胞膜内外囊泡的动力学常数K(m)和V(max)。提出的结果确定了MRP1是人红细胞膜中BCPCF的主要转运蛋白,并首次表明可以通过流式细胞术监测荧光底物向内而外囊泡的主动转运。

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