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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Phenothiazine maleates stimulate MRP1 transport activity in human erythrocytes
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Phenothiazine maleates stimulate MRP1 transport activity in human erythrocytes

机译:吩噻嗪马来酸酯刺激人红细胞中的MRP1转运活性

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摘要

The expression of multidrug resistance-associated protein (MRP1) results in ATP-dependent reduction of drugs' concentration in cancer cells, i.e., multidrug resistance (MDR). Since the majority of projects are concentrated on the search of the new MDR modulators, there are very few reports on drug-induced stimulation of MDR transporters activity. In the present work, by means of functional fluorescence assay we have shown that MRP1-mediated efflux of 2,7'-bis-(3-carboxypropyl)-5-(and-6)-carboxyfluorescein (BCPCF) out of human erythrocytes is stimulated by phenothiazine maleates that have been already identified as P-glycoprotein inhibitors. Phenothiazine maleates-induced stimulation of ATP-dependent uptake of 2',7'-bis-(3-carboxyethyl)-5-(and-6)-carboxyfluorescein (BCECF) into inside-out membrane vesicles prepared from erythrocyte membranes has been also demonstrated. Moreover, it was shown that phenothiazine maleates exerted stimulating effect on ATPase activity measured in erythrocyte membranes. To our best knowledge, this report is the first one demonstrating that compounds able to inhibit transport activity of P-glycoprotein can stimulate MRP1 transporter. We conclude that phenothiazine maleates probably exert their stimulatory effect on MRP1 by direct interaction with the protein at the site different from the substrate binding site. (c) 2005 Elsevier B.V. All rights reserved.
机译:多药耐药相关蛋白(MRP1)的表达导致癌细胞中ATP浓度的药物浓度降低,即多药耐药(MDR)。由于大多数项目都集中在寻找新的MDR调节剂,因此很少有关于药物诱导的MDR转运蛋白活性刺激的报道。在目前的工作中,通过功能性荧光检测,我们已经证明,MRP1介导的人红细胞中2,7'-双-(3-羧丙基)-5-(和-6)-羧基荧光素(BCPCF)的外排是由已被鉴定为P-糖蛋白抑制剂的吩噻嗪马来酸酯刺激。马来酸吩噻嗪诱导的ATP依赖性的2',7'-双-(3-羧乙基)-5-(和-6)-羧基荧光素(BCECF)吸收由红细胞膜制备的由内而外的膜囊泡也被刺激演示。此外,显示出吩噻嗪马来酸酯对红细胞膜中测得的ATP酶活性具有刺激作用。据我们所知,该报告是第一个证明能够抑制P-糖蛋白转运活性的化合物可以刺激MRP1转运蛋白的报告。我们得出的结论是,吩噻嗪马来酸酯可能通过与不同于底物结合位点的蛋白质直接相互作用而对MRP1发挥其刺激作用。 (c)2005 Elsevier B.V.保留所有权利。

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