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用羟基柔红霉素筛选的多药耐药细胞中P-糖蛋白过表达,但其mRNA未过表达。

Overexpression of P-glycoprotein but not its mRNA in multidrug resistant cells selected with hydroxyrubicin.

作者信息

Zhao J Y, Savaraj N, Song R, Priebe W, Kuo M T

机构信息

Department of Molecular Pathology, University of Texas M.D. Anderson Cancer Center, Houston 77030.

出版信息

Anticancer Res. 1994 Sep-Oct;14(5A):1735-42.

PMID:7531410
Abstract

Previous studies have revealed that cultured cells treated with lipophilic natural products containing aromatic rings and basic amino group usually yielded multidrug resistant (MDR) variants. These MDR cells overexpress P-glycoprotein (P-gp), most often due to gene amplification or transcriptional activation of mdr/P-gp genes. Doxorubicin (Dox) is an anthracycline that belongs to this group of compounds. To explore the possible resistance mechanism(s) to anthracyclines that do not involve P-gp, we use a Dox analog, hydroxyrubicin (HyR) or WP159, which contains a C3' hydroxy group in replacement of the amino group in the sugar moiety of Dox thereby reducing basicity and eliminating positive charge in the parental compound to establish HyR-resistant cell lines. These resistant cells displayed the MDR phenotype and overexpressed P-gp as analyzed by Western blot analyses and immunohistochemical staining using two different anti-P-gp antibodies. Strikingly, the levels of P-gp mRNA in the majority of these MDR cells remained comparable to those in the drug-sensitive counterparts by slot blot hybridization. These results implicate that the basic center of the selecting agent is a critical determinant for generating diverse MDR variants, and that HyR may have a posttranscriptional effect on P-gp biosynthesis. This is the first report suggesting that cultured cells exposed to a particular selecting agent may give rise to particular subtype of MDR variants.

摘要

先前的研究表明,用含有芳香环和碱性氨基的亲脂性天然产物处理培养细胞,通常会产生多药耐药(MDR)变体。这些MDR细胞通常会过度表达P-糖蛋白(P-gp),这最常见于mdr/P-gp基因的基因扩增或转录激活。阿霉素(Dox)是属于这类化合物的一种蒽环类药物。为了探索不涉及P-gp的对蒽环类药物可能的耐药机制,我们使用一种Dox类似物、羟基柔红霉素(HyR)或WP159,它在糖部分含有一个C3'羟基取代了Dox中的氨基,从而降低了碱性并消除了母体化合物中的正电荷,以建立HyR耐药细胞系。通过蛋白质免疫印迹分析以及使用两种不同抗P-gp抗体的免疫组织化学染色分析,这些耐药细胞表现出MDR表型并过度表达P-gp。令人惊讶的是,通过狭缝印迹杂交分析,这些MDR细胞中大多数的P-gp mRNA水平与药物敏感细胞中的水平相当。这些结果表明,选择剂的碱性中心是产生多种MDR变体的关键决定因素,并且HyR可能对P-gp生物合成具有转录后效应。这是第一份表明暴露于特定选择剂的培养细胞可能产生特定亚型MDR变体的报告。

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