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用抗肿瘤药物依托泊苷处理人白血病细胞系HL60后,凋亡相关基因BCL2、BAX、FAS、半胱天冬酶-3及新成员BCL2L12的mRNA表达变化。

Alterations in mRNA expression of apoptosis-related genes BCL2, BAX, FAS, caspase-3, and the novel member BCL2L12 after treatment of human leukemic cell line HL60 with the antineoplastic agent etoposide.

作者信息

Floros Kostas V, Thomadaki Hellinida, Florou Dimitra, Talieri Maroulio, Scorilas Andreas

机构信息

Department of Biochemistry and Molecular Biology, Faculty of Biology, University of Athens, and G. Papanicolaou Research Center for Oncology, Saint Sava's Hospital, Athens, Greece.

出版信息

Ann N Y Acad Sci. 2006 Dec;1090:89-97. doi: 10.1196/annals.1378.009.

Abstract

Apoptotic cell death is a highly regulated process, which plays a crucial role in many biological events. Etoposide is an antineoplastic drug, which targets the DNA unwinding enzyme, topoisomerase II. The aim of the present research approach to investigate the expression of the apoptosis-related genes BCL2 (Bcl-2), FAS, Caspase-3, BAX and the new member BCL2L12, cloned by our group, along with treatment of HL-60 leukemia cells with etoposide. The kinetics of apoptosis induction and cell toxicity was evaluated by DNA laddering and MTT method, respectively. The mRNA expression levels of the genes were analyzed by RT-PCR using gene-specific primers. Beta-actin was used as a control gene. An important downregulation of BCL2L12 was observed at 4 h of drug treatment, whereas BAX was upregulated at the same time point. No alteration in the expression pattern of the other apoptosis-related genes was detected. Since, the main anticarcinogenic effect of etoposide is due to the induction of apoptosis, these changes observed in the mRNA expression levels of the genes may be an underlying mechanism.

摘要

凋亡性细胞死亡是一个高度受调控的过程,在许多生物学事件中起关键作用。依托泊苷是一种抗肿瘤药物,其作用靶点是DNA解旋酶拓扑异构酶II。本研究方法的目的是研究凋亡相关基因BCL2(Bcl-2)、FAS、半胱天冬酶-3、BAX以及我们团队克隆的新成员BCL2L12的表达情况,同时用依托泊苷处理HL-60白血病细胞。分别通过DNA梯状条带分析和MTT法评估凋亡诱导动力学和细胞毒性。使用基因特异性引物通过RT-PCR分析基因的mRNA表达水平。β-肌动蛋白用作对照基因。在药物处理4小时时观察到BCL2L12有重要的下调,而BAX在同一时间点上调。未检测到其他凋亡相关基因表达模式的改变。由于依托泊苷的主要抗癌作用是诱导凋亡,这些基因mRNA表达水平的变化可能是一种潜在机制。

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