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多药耐药癌细胞中MDR1基因表达的调控与YB-1无关。

Regulation of MDR1 gene expression in multidrug-resistant cancer cells is independent from YB-1.

作者信息

Kaszubiak Alexander, Kupstat Annette, Müller Ursula, Hausmann Romy, Holm Per Sonne, Lage Hermann

机构信息

Charité Campus Mitte, Institute of Pathology, Charitéplatz 1, D-10117 Berlin, Germany.

出版信息

Biochem Biophys Res Commun. 2007 May 25;357(1):295-301. doi: 10.1016/j.bbrc.2007.03.145. Epub 2007 Apr 2.

Abstract

The MDR1 gene encoded transmembrane ABC-transporter MDR1/P-glycoprotein can mediate the phenotype of multidrug resistance (MDR), a major obstacle in the clinical management of cancer patients. It was hypothesized that YB-1 is a fundamental regulatory factor of the MDR1 gene in tumor cells and can therewith enhance drug resistance. To analyze the potential impact of YB-1 in MDR cancer cells, two specific anti-YB-1 small interfering RNAs (siRNAs) were designed for transient triggering the gene-silencing RNA interference (RNAi) pathway in the MDR cell lines EPG85-257RDB and EPP85-181RDB as well as in their drug-sensitive counterparts EPG85-257P and EPP85-181P. Since both siRNAs showed biological activity, for stable inhibition of YB-1 corresponding tetracycline-inducible short hairpin RNA (shRNA)-encoding expression vectors were designed. By treatment of the cancer cells with these constructs, the expression of the targeted YB-1 encoding mRNA and protein was completely inhibited following tetracycline exposure. These gene-silencing effects were not accompanied by modulation of the MDR1 expression or by reversal of the drug-resistant phenotype. In conclusion, the data demonstrate the utility of the analyzed RNAs as powerful laboratory tools and indicate that YB-1 is not involved in the regulation of the MDR1 gene or the development of the drug-resistant phenotype in MDR cancer cells.

摘要

MDR1基因编码跨膜ABC转运蛋白MDR1/P-糖蛋白,可介导多药耐药(MDR)表型,这是癌症患者临床治疗中的主要障碍。据推测,YB-1是肿瘤细胞中MDR1基因的基本调节因子,因此可增强耐药性。为分析YB-1对MDR癌细胞的潜在影响,设计了两种特异性抗YB-1小干扰RNA(siRNA),用于在MDR细胞系EPG85-257RDB和EPP85-181RDB及其药物敏感对应细胞系EPG85-257P和EPP85-181P中瞬时触发基因沉默RNA干扰(RNAi)途径。由于两种siRNA均显示出生物学活性,因此设计了相应的四环素诱导型短发夹RNA(shRNA)编码表达载体,用于稳定抑制YB-1。用这些构建体处理癌细胞后,四环素处理后靶向YB-1编码的mRNA和蛋白质的表达被完全抑制。这些基因沉默效应并未伴随MDR1表达的调节或耐药表型的逆转。总之,数据证明了所分析的RNA作为强大实验室工具的实用性,并表明YB-1不参与MDR癌细胞中MDR1基因的调节或耐药表型的形成。

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