光亲和标记显示MRP1 (ABCC1)的药物结合域。

J M Karwatsky, E Georges
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引用次数: 16

摘要

耐药是癌症患者接受单一或多种药物治疗的主要障碍。逆转肿瘤细胞耐药的努力尚未取得成功。近年来,相当多的重点放在了解产生耐药性的潜在机制上。癌细胞中多药耐药蛋白1 (MRP1或ABCC1)的表达已被证明对多种抗癌药物具有耐药性。MRP1是atp结合盒(ABC)家族的成员,其在肿瘤细胞中的功能是通过通电的药物外排来减少药物积累。为了进一步了解MRP1在肿瘤耐药中的作用,了解其蛋白结合特性及其结合位点的位置是必不可少的。光亲和标记(PAL)已经成为一种领先的技术,可以快速揭示蛋白质的药物结合特性和最终的药物结合域。已经开发了几种mrp1特异性光反应探针。MRP1的PAL首先是用喹啉类药物IAAQ证明的。其他研究表明,MRP1的高亲和力内源性底物LTC(4)具有内在的光反应性质,并结合在MRP1的N端和c端结构域内。LTC(4)与谷胱甘肽(GSH)偶联,这是几种MRP1底物的共同特性。此外,已经鉴定出几种与MRP1相互作用的非偶联药物:[(3)H]VF-13,159, IAAQ, IACI和IAARh123。作图研究表明IACI和IAARh123结合MRP1跨膜区10-11和16-17的两个位点。有趣的是,[(125)I]azidoAG-A和[(125)I]LY475776的gsh依赖性PAL发生在TM 16-17内或近端。PAL具有GSH、IAAGSH和azidophenacyl-[(35)S]GSH的几种类似物,除了结合MRP1、L0和L1的两个细胞质区域外,还发现与TM 10-11和TM 16-17中的MRP1特异性相互作用。本文综述了利用PAL研究MRP1与各种药物和细胞代谢物的相互作用。此外,通过PAL与各种光反应性药物类似物鉴定的MRP1药物结合域的知识,为更详细地分析MRP1结合域提供了重要的第一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Drug binding domains of MRP1 (ABCC1) as revealed by photoaffinity labeling.

Drug resistance is a major impediment in the treatment of cancer patients receiving single or multiple drug treatment. Efforts to reverse drug resistance of tumor cells have not been successful. In recent years, considerable emphasis has been placed on understanding the underlying mechanisms that confer drug resistance. The expression of the multidrug resistance protein 1 (MRP1 or ABCC1) in cancer cells has been shown to confer resistance to diverse classes of anti-cancer drugs. MRP1 is a member of the ATP-binding cassette (ABC) family whose function, in tumor cells, is to reduce drug accumulation through energized drug efflux. To learn more about the functions of MRP1 in tumor drug resistance, knowledge of the protein binding characteristics and the location of its binding sites are essential. Photoaffinity labeling (PAL) has emerged as a leading technique that can rapidly shed light on a protein's drug binding characteristics and ultimately drug binding domains. Several MRP1-specific photoreactive probes have been developed. PAL of MRP1 was first demonstrated with the quinoline-based drug, IAAQ. Other studies showed that the high affinity endogenous substrate of MRP1, LTC(4), has intrinsic photoreactive properties and binds within both N- and C-terminal domains of MRP1. LTC(4) is conjugated to glutathione (GSH), a property common to several MRP1 substrates. In addition, several unconjugated drugs have been identified that interact with MRP1: [(3)H]VF-13,159, IAAQ, IACI and IAARh123. Mapping studies showed that IACI and IAARh123 bind two sites within transmembrane (TM) regions 10-11 and 16-17 of MRP1. Interestingly, the GSH-dependent PAL of [(125)I]azidoAG-A and [(125)I]LY475776 occurs within, or proximal to TM 16-17. The PAL with several analogs of GSH, IAAGSH and azidophenacyl-[(35)S]GSH found to interact specifically with MRP1 within TM 10-11 and TM 16-17 in addition to binding two cytoplasmic regions in MRP1, L0 and L1. This review focuses on the use of PAL for studying MRP1 interactions with various drugs and cell metabolites. Furthermore, knowledge of MRP1 drug binding domains, as identified by PAL with various photoreactive drug analogs, provides an important first step towards more detailed analyses of MRP1 binding domains.

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