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多药转运蛋白P-糖蛋白功能改变突变体中耐药性与药物诱导构象转变的协同变化。

Coordinate changes in drug resistance and drug-induced conformational transitions in altered-function mutants of the multidrug transporter P-glycoprotein.

作者信息

Ruth A, Stein W D, Rose E, Roninson I B

机构信息

Department of Molecular Genetics, University of Illinois at Chicago, Chicago, Illinois 60607, USA.

出版信息

Biochemistry. 2001 Apr 10;40(14):4332-9. doi: 10.1021/bi001373f.

Abstract

The MDR1 P-glycoprotein (Pgp), responsible for a clinically important form of multidrug resistance in cancer, is an ATPase efflux pump for multiple lipophilic drugs. The G185V mutation near transmembrane domain 3 of human Pgp increases its relative ability to transport several drugs, including etoposide, but decreases the transport of other substrates. MDR1 cDNA with the G185V substitution was used in a function-based selection to identify mutations that would further increase Pgp-mediated resistance to etoposide. This selection yielded the I186N substitution, adjacent to G185V. Pgps with G185V, I186N, or both mutations were compared to the wild-type Pgp for their ability to confer resistance to different drugs in NIH 3T3 cells. In contrast to the differential effects of G185V, I186N mutation increased resistance to all the tested drugs and augmented the effect of G185V on etoposide resistance. The effects of the mutations on conformational transitions of Pgp induced by different drugs were investigated using a conformation-sensitive antibody UIC2. Ligand-binding analysis of the drug-induced increase in UIC2 reactivity was used to determine the K(m) value that reflects the apparent affinity of drugs for Pgp, and the Hill number reflecting the apparent number of drug-binding sites. Both mutations altered the magnitude of drug-induced increases in UIC2 immunoreactivity, the K(m) values, and the Hill numbers for individual drugs. Mutation-induced changes in the magnitude of UIC2 reactivity shift did not correlate with the effects of the mutations on resistance to the corresponding drugs. In contrast, an increase or a decrease in drug resistance relative to that of the wild type was accompanied by a corresponding increase or decrease in the K(m) or in both the K(m) and the Hill number. These results suggest that mutations that alter the ability of Pgp to transport individual drugs change the apparent affinity and the apparent number of drug-binding sites in Pgp.

摘要

多药耐药蛋白1(MDR1)P-糖蛋白(Pgp)是一种针对多种亲脂性药物的ATP酶外排泵,它在临床上导致癌症的一种重要多药耐药形式。人Pgp跨膜结构域3附近的G185V突变增加了其转运多种药物(包括依托泊苷)的相对能力,但降低了其他底物的转运能力。携带G185V替代的MDR1 cDNA用于基于功能的筛选,以鉴定可进一步增加Pgp介导的对依托泊苷耐药性的突变。该筛选产生了与G185V相邻的I186N替代。将具有G185V、I186N或两种突变的Pgps与野生型Pgp在NIH 3T3细胞中赋予对不同药物耐药性的能力进行比较。与G185V的差异效应相反,I186N突变增加了对所有测试药物的耐药性,并增强了G185V对依托泊苷耐药性的影响。使用构象敏感抗体UIC2研究了这些突变对不同药物诱导Pgp构象转变的影响。通过药物诱导的UIC2反应性增加的配体结合分析来确定反映药物对Pgp表观亲和力的K(m)值以及反映药物结合位点表观数量的希尔系数。两种突变均改变了药物诱导的UIC2免疫反应性增加的幅度、K(m)值以及每种药物的希尔系数。突变诱导的UIC2反应性位移幅度变化与突变对相应药物耐药性的影响不相关。相反,相对于野生型,耐药性的增加或降低伴随着K(m)的相应增加或降低,或K(m)和希尔系数两者的相应增加或降低。这些结果表明,改变Pgp转运单个药物能力的突变会改变Pgp中药物结合位点的表观亲和力和表观数量。

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