Steelman Linda S, Abrams Steve L, Ruvolo Peter, Ruvolo Vivian, Cocco Lucio, Ratti Stefano, Martelli Alberto M, Neri Luca M, Candido Saverio, Libra Massimo, McCubrey James A
Department of Microbiology and Immunology, Brody School of Medicine at East Carolina University, Greenville, SC, USA.
Section of Signal Transduction and Apoptosis, Hormel Institute, University of Minnesota, Austin, TX, USA.
Oncotarget. 2017 Dec 6;8(68):113013-113033. doi: 10.18632/oncotarget.22956. eCollection 2017 Dec 22.
Chemotherapeutic drug treatment can result in the emergence of drug-resistant cells. By culturing an interleukin-3 (IL-3)-dependent cell line, FL5.12 cells in the presence of the chemotherapeutic drug doxorubicin, we isolated FL/Doxo cells which are multi-drug resistant. Increased levels of drug efflux were detected in FL/Doxo cells which could be inhibited by the MDR1 inhibitor verapamil but not by the MRP1 inhibitor MK571. The effects of TP53 and MEK1 were examined by infection of FL/Doxo cells with retroviruses encoding either a dominant negative TP-53 gene (FL/Doxo+ TP53 (DN) or a constitutively-activated MEK-1 gene (FL/Doxo + MEK1 (CA). Elevated MDR1 but not MRP1 mRNA transcripts were detected by quantitative RT-PCR in the drug-resistant cells while transcripts encoding anti-apoptotic genes such as: BCL2, BCLXL and MCL1 were observed at higher levels in the drug-sensitive FL5.12 cells. The percentage of cells that were side-population positive was increased in the drug-resistant cells compared to the parental line. Drug-resistance and side-positive population cells have been associated with cancer stem cells (CSC). Our studies suggest mechanisms which could allow the targeting of these molecules to prevent drug-resistance.
化疗药物治疗可导致耐药细胞的出现。通过在化疗药物阿霉素存在的情况下培养白细胞介素-3(IL-3)依赖性细胞系FL5.12细胞,我们分离出了多药耐药的FL/Doxo细胞。在FL/Doxo细胞中检测到药物外排水平升高,这可被MDR1抑制剂维拉帕米抑制,但不能被MRP1抑制剂MK571抑制。通过用编码显性负性TP-53基因(FL/Doxo + TP53(DN))或组成型激活的MEK-1基因(FL/Doxo + MEK1(CA))的逆转录病毒感染FL/Doxo细胞,研究了TP53和MEK1的作用。通过定量RT-PCR在耐药细胞中检测到MDR1 mRNA转录本升高,但未检测到MRP1 mRNA转录本升高,而在药物敏感的FL5.12细胞中观察到编码抗凋亡基因如BCL2、BCLXL和MCL1的转录本水平较高。与亲代细胞系相比,耐药细胞中侧群阳性细胞的百分比增加。耐药性和侧群阳性细胞与癌症干细胞(CSC)有关。我们的研究提出了一些机制,这些机制可以靶向这些分子以预防耐药性。