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由过表达多药耐药相关蛋白(MRP)的HL60/ADR细胞制备的膜囊泡对亲脂性细胞毒性药物的ATP依赖性转运

ATP-dependent transport of lipophilic cytotoxic drugs by membrane vesicles prepared from MRP-overexpressing HL60/ADR cells.

作者信息

Paul S, Breuninger L M, Kruh G D

机构信息

Department of Medical Oncology, Fox Chase Cancer Center, Philadelphia, Pennsylvania 19111, USA.

出版信息

Biochemistry. 1996 Nov 5;35(44):14003-11. doi: 10.1021/bi9618528.

Abstract

MRP is an ATP-binding cassette family transporter that confers cellular resistance to a variety of natural product cytotoxic agents. However, the biochemical mechanism by which MRP confers resistance has not been established. To gain insight into its mechanism of action, the in vitro substrate specificity of MRP was examined by analyzing drug uptake into membrane vesicles prepared from MRP-overexpressing HL60/ADR cells. Compared to control HL60 membrane vesicles, HL60/ADR membrane vesicles exhibited markedly enhanced ATP-dependent transport of daunorubicin, etoposide, and vincristine. In contrast, little or no increased uptake was observed for vinblastine and Taxol. This pattern of in vitro substrate specificity was consistent with the analysis of the HL60/ADR drug resistance phenotype, which revealed substantial levels of resistance to anthracyclines, etoposide, and vincristine, but only slightly increased resistance to vinblastine and Taxol. Drug transport into HL60/ADR membrane vesicles was osmotically sensitive and dependent on ATP concentration, with a K(m) value of 45 microM for ATP. Lineweaver-Burk analysis indicated that substrate transport was concentration-dependent, with apparent K(m) values of 6.1, 5.7, and 5.5 microM for daunorubicin, etoposide, and vincristine, respectively. The P-glycoprotein-modulating agents cyclosporin A, PSC833, and verapamil, which have modest reversing effects on MRP-overexpressing cell lines, were weak competitive inhibitors of daunorubicin transport, with Ki values of 35, 84, and 95 microM, respectively. In addition, the glutathione analog azidophenacyl-glutathione, oxidized glutathione, and the LTD4 antagonist MK571 were competitive inhibitors of daunorubicin transport with Ki values of 69, 31, and 3.0 microM, respectively. Genistein, an MRP-specific modulating agent, and arsenate, a compound for which MRP has previously been reported to confer resistance, were also competitive inhibitors, with Ki values of 17 and 29 microM, respectively. These results are consistent with a previous report in which we demonstrated that HL60/ADR membrane vesicles transport azidophenacylglutathione and that transport of this agent is competitively inhibited by daunorubicin, vincristine, and etoposide [Shen et al., (1966) Biochemistry 35, 5719-5725]. Together, these uptake studies performed with HL60/ADR membrane vesicles constitute a consistent body of evidence that indicates that MRP transports both glutathione S conjugates and unaltered natural product drugs and support the idea that the direct transport of unaltered lipophilic cytotoxic drugs is the predominant biochemical mechanism whereby MRP confers multidrug resistance.

摘要

多药耐药相关蛋白(MRP)是一种ATP结合盒家族转运蛋白,可赋予细胞对多种天然产物细胞毒性药物的抗性。然而,MRP赋予抗性的生化机制尚未明确。为深入了解其作用机制,通过分析药物摄取到由过表达MRP的HL60/ADR细胞制备的膜囊泡中,检测了MRP的体外底物特异性。与对照HL60膜囊泡相比,HL60/ADR膜囊泡对柔红霉素、依托泊苷和长春新碱的ATP依赖性转运显著增强。相反,对于长春花碱和紫杉醇,未观察到摄取增加或仅有少量增加。这种体外底物特异性模式与HL60/ADR耐药表型分析一致,该分析显示对蒽环类药物、依托泊苷和长春新碱有显著抗性水平,但对长春花碱和紫杉醇的抗性仅略有增加。药物转运到HL60/ADR膜囊泡中对渗透压敏感且依赖于ATP浓度,ATP的K(m)值为45 microM。Lineweaver - Burk分析表明底物转运是浓度依赖性的,柔红霉素、依托泊苷和长春新碱的表观K(m)值分别为6.1、5.7和5.5 microM。对过表达MRP的细胞系有适度逆转作用的P - 糖蛋白调节剂环孢素A、PSC833和维拉帕米是柔红霉素转运的弱竞争性抑制剂,Ki值分别为35、84和95 microM。此外,谷胱甘肽类似物叠氮苯甲酰 - 谷胱甘肽、氧化型谷胱甘肽和白三烯D4拮抗剂MK571是柔红霉素转运的竞争性抑制剂,Ki值分别为69、31和3.0 microM。染料木黄酮是一种MRP特异性调节剂,而砷酸盐是一种先前报道MRP可赋予其抗性的化合物,它们也是竞争性抑制剂,Ki值分别为17和29 microM。这些结果与之前的一份报告一致,在该报告中我们证明HL60/ADR膜囊泡转运叠氮苯甲酰谷胱甘肽且该物质的转运受到柔红霉素、长春新碱和依托泊苷的竞争性抑制[Shen等人,(1966年)《生物化学》35卷,5719 - 5725页]。总之,这些用HL60/ADR膜囊泡进行的摄取研究构成了一系列一致的证据,表明MRP既转运谷胱甘肽S共轭物又转运未改变的天然产物药物,并支持这样一种观点,即未改变的亲脂性细胞毒性药物的直接转运是MRP赋予多药耐药性的主要生化机制。

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