Priebe W, Krawczyk M, Kuo M T, Yamane Y, Savaraj N, Ishikawa T
Department of Bioimmunotherapy, University of Texas M. D. Anderson Cancer Center, Houston 77030, USA.
Biochem Biophys Res Commun. 1998 Jun 29;247(3):859-63. doi: 10.1006/bbrc.1998.8887.
Overexpression of the multidrug resistance-associated protein (MRP1) gene encoding a human GS-X pump in cultured cells resulted in increased cellular resistance to antitumor agents, including doxorubicin (Dox) and daunomycin (Dau), as well as certain heavy metals. However, studies with membrane vesicles prepared from the resistant cells revealed that Dox and Dau are poor substrates for the transport mediated by MRP/GS-X pump, suggesting that metabolic modifications of these drugs might be required for the transport. To test this hypothesis, we prepared four glutathione conjugates by linking the cysteine residue of GSH to Dox and Dau at eitehr the C-7 or C-14 position. The affinity of the synthesized conjugates toward MRP/GS-X pump was examined in the LTC4 transport assay using membrane vesicles prepared from an MRP1 gene-overexpressing cell line, SR3A. Unconjugated Dox and Dau failed to inhibit the transport of LTC4, whereas 30 microM GS-Dox or GS-Dau conjugates completely inhibited the transport. Kinetic analyses revealed that the inhibition by these GS-conjugates is competitive with Ki values ranging from 60 to 200 nM, suggesting that these compounds have high affinities toward MRP/GS-X pump and share the common binding site(s) with LTC4. Our present results support the hypothesis that glutathionation can facilitate the transport of anthracyclines by the MRP/GS-X pump.
在培养细胞中,编码人GS-X泵的多药耐药相关蛋白(MRP1)基因的过表达导致细胞对包括阿霉素(Dox)和柔红霉素(Dau)在内的抗肿瘤药物以及某些重金属的耐药性增加。然而,对从耐药细胞制备的膜囊泡进行的研究表明,Dox和Dau是MRP/GS-X泵介导的转运的不良底物,这表明这些药物的代谢修饰可能是转运所必需的。为了验证这一假设,我们通过将谷胱甘肽(GSH)的半胱氨酸残基与Dox和Dau在C-7或C-14位置连接,制备了四种谷胱甘肽缀合物。使用从MRP1基因过表达细胞系SR3A制备的膜囊泡,在LTC4转运试验中检测了合成缀合物对MRP/GS-X泵的亲和力。未缀合的Dox和Dau未能抑制LTC4的转运,而30 microM的GS-Dox或GS-Dau缀合物完全抑制了转运。动力学分析表明,这些GS缀合物的抑制作用具有竞争性,Ki值在60至200 nM之间,这表明这些化合物对MRP/GS-X泵具有高亲和力,并与LTC4共享共同的结合位点。我们目前的结果支持了谷胱甘肽化可以促进蒽环类药物通过MRP/GS-X泵转运的假设。