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多药耐药调节剂PSC 833和环孢素A显示出不同的能力,可独立于其多药耐药表型在淋巴白血病细胞系中诱导凋亡。

Multidrug resistance modulators PSC 833 and CsA show differential capacity to induce apoptosis in lymphoid leukemia cell lines independently of their MDR phenotype.

作者信息

Lopes Eloisi C, Garcia Mariana, Benavides Fernando, Shen Jianjun, Conti Claudio J, Alvarez Elida, Hajos Silvia E

机构信息

Department of Immunology, School of Pharmacy and Biochemistry, University of Buenos Aires (UBA) IDEHU-CONICET, Junin 956 4 piso, 1113, Buenos Aires, Argentina.

出版信息

Leuk Res. 2003 May;27(5):413-23. doi: 10.1016/s0145-2126(02)00216-3.

Abstract

Among the mechanisms that induce multidrug resistance (MDR), one of those most frequent is over-expression of a phosphoglycoprotein (Pgp) encoded in the mouse by the mdr-1 and mdr-3 genes. We have demonstrated that cyclosporin-A (CsA) as well as its analogue PSC 833 were able to revert the MDR phenotype in murine cell lines resistant to vincristine (LBR-V160) or doxorubicin (LBR-D160). The aim of this work was to evaluate the ability of PSC 833 and CsA to modulate mdr-1, mdr-3 and mrp-1 genes as well as to induce apoptosis analyzing the mechanism involved in the above tumor cell lines. By semi-quantitative RT-PCR, we demonstrated that mdr-3 was over-expressed in both resistant lines while mdr-1 was over-expressed only in LBR-V160; in contrast, mrp-1 expression was not evidenced in any of the cell lines. After treatment with 0.1 microg ml(-1) of either PSC 833 or CsA, LBR-V160 showed no changes in mdr-1 but decreased mdr-3 expression, while LBR-D160 failed to display any modification in the expression of these genes. Apoptosis was evidenced by fluorescence microscopy, S minuscule accumulation and agarose gel electrophoresis. Our results demonstrated that CsA (1 microg ml(-1)) was able to induce apoptosis in all cell lines: 18.31% (+/-4.46) for LBR-, 25.96% (+/-5.24) for LBR-V160 and 27.36% (+/-4.12) for LBR-D160, while PSC 833 (1 microg ml(-1)) only induced apoptosis 21.51% (+/-5.73) in LBR-V160 cell line. The expression of Bcl-2 family proteins (Bcl-2, Bax and Bcl-x(L)) was analyzed by flow cytometry showing high expression of the three proteins which was not significantly modified after treatment with either PSC 833 or CsA on the sensitive as well as on the resistant cell lines. Single stranded conformation polymorphisms analysis of p53 (Trp53) gene in the cell lines showed no mutation in exons 5-8 of the tumor suppressor gene. We conclude that depending on the concentration used, PSC 833 and CsA may act either by modulating the mdr-3 gene (0.1 microg ml(-1)) or by direct impact on the cells through induction of apoptosis (1 microg ml(-1)), in the latter case through a mechanism that might act independent of the Bcl-2 family proteins.

摘要

在诱导多药耐药(MDR)的机制中,最常见的机制之一是小鼠中由mdr - 1和mdr - 3基因编码的磷酸糖蛋白(Pgp)过度表达。我们已经证明,环孢菌素A(CsA)及其类似物PSC 833能够使对长春新碱(LBR - V160)或阿霉素(LBR - D160)耐药的小鼠细胞系中的MDR表型逆转。这项工作的目的是评估PSC 833和CsA调节mdr - 1、mdr - 3和mrp - 1基因的能力,以及通过分析上述肿瘤细胞系中涉及的机制来诱导细胞凋亡。通过半定量RT - PCR,我们证明mdr - 3在两个耐药细胞系中均过度表达,而mdr - 1仅在LBR - V160中过度表达;相反,在任何细胞系中均未检测到mrp - 1的表达。用0.1μg/ml的PSC 833或CsA处理后,LBR - V160的mdr - 1没有变化,但mdr - 3表达降低,而LBR - D160在这些基因的表达上未显示任何改变。通过荧光显微镜、S小体积累和琼脂糖凝胶电泳证实了细胞凋亡。我们的结果表明,CsA(1μg/ml)能够在所有细胞系中诱导细胞凋亡:LBR - 为18.31%(±4.46),LBR - V160为25.96%(±5.24),LBR - D160为27.36%(±4.12),而PSC 833(1μg/ml)仅在LBR - V160细胞系中诱导21.51%(±5.73)的细胞凋亡。通过流式细胞术分析Bcl - 2家族蛋白(Bcl - 2、Bax和Bcl - x(L))的表达,结果显示这三种蛋白在敏感和耐药细胞系中均高表达,在用PSC 833或CsA处理后未发生显著改变。对细胞系中p53(Trp53)基因进行单链构象多态性分析,结果显示肿瘤抑制基因外显子5 - 8未发生突变。我们得出结论,根据所使用的浓度,PSC 833和CsA可能通过调节mdr - 3基因(0.1μg/ml)起作用,或者通过诱导细胞凋亡(1μg/ml)直接作用于细胞,在后一种情况下,其作用机制可能独立于Bcl - 2家族蛋白。

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