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野生型p53的表达通过促进G2期向M期的转变增加了依托泊苷对M1髓系白血病细胞的细胞毒性:对基因治疗的启示。

Expression of wild-type p53 increases etoposide cytotoxicity in M1 myeloid leukemia cells by facilitated G2 to M transition: implications for gene therapy.

作者信息

Skladanowski A, Larsen A K

机构信息

Department of Structural Biology and Pharmacology, CNRS URA 147, Institut Gustave Roussy PR2, Villejuif, France.

出版信息

Cancer Res. 1997 Mar 1;57(5):818-23.

PMID:9041178
Abstract

We have evaluated the role of p53 in the induction of cell death by the DNA topoisomerase II inhibitor etoposide in M1 myeloid leukemia cells. Three different clones of M1 cells were used: S6, which lacks p53; Phe-132, which expresses mutant p53 constitutively; and LTR-13, which expresses mutant protein at 37 degrees C and wild-type p53 at 32 degrees C. As described previously, LTR-13 cells undergo rapid apoptosis upon induction of wild-type p53 at 32 degrees C. Multiparameter flow cytometric analysis showed that etoposide treatment (0.5 microg/ml) of all three cell lines at 37 degrees C is associated with a block in the G2 phase of the cell cycle, whereas the cells preferentially die out of the next S phase. Induction of wild-type p53 in LTR-13 cells is associated with a loss of cells in late S and G2-M phase, and the cells die out of the early S phase. Interestingly, the simultaneous induction of apoptosis by both pathways (wild-type p53 and etoposide) leads to suppression of the etoposide-induced G2 block. To determine the effect of p53 on the G2 to M transition, LTR-13 cells were incubated with etoposide for 24 h at 37 degrees C and then either maintained for an additional 12 h at 37 degrees C or shifted to 32 degrees C to activate wild-type p53. The expression of wild-type p53 resulted in an increase in mitosis-specific phosphorylation, as determined by the MPM-2 antibody as well as the formation of mitotic spindles. This was associated with an important augmentation of the cytotoxic effect of etoposide. In contrast, a similar temperature shift of Phe-132 cells, which express mutant p53, had no effect on either immunostaining with MPM-2 or the cytotoxicity. Taken together, our results indicate that wild-type p53 can override the etoposide-induced G2 block in at least some cell types. These data propose a new role for p53 in the cell death induced by chemotherapeutic agents and may have important implications for gene therapy.

摘要

我们评估了p53在DNA拓扑异构酶II抑制剂依托泊苷诱导M1髓系白血病细胞死亡中的作用。使用了三种不同的M1细胞克隆:S6,其缺乏p53;Phe - 132,其组成性表达突变型p53;以及LTR - 13,其在37℃时表达突变蛋白,在32℃时表达野生型p53。如先前所述,LTR - 13细胞在32℃诱导野生型p53时会迅速发生凋亡。多参数流式细胞术分析表明,在37℃用依托泊苷(0.5μg/ml)处理所有三种细胞系均与细胞周期G2期阻滞有关,而细胞优先在下一个S期死亡。LTR - 13细胞中野生型p53的诱导与S期晚期和G2 - M期细胞的丢失有关,并且细胞在S期早期死亡。有趣的是,两种途径(野生型p53和依托泊苷)同时诱导凋亡会导致依托泊苷诱导G2阻滞的抑制。为了确定p53对G2到M期转换的影响,将LTR - 13细胞在37℃与依托泊苷孵育24小时,然后要么在37℃再维持12小时,要么转移到32℃以激活野生型p53。野生型p53的表达导致有丝分裂特异性磷酸化增加,这由MPM - 2抗体确定,以及有丝分裂纺锤体的形成。这与依托泊苷细胞毒性作用的重要增强有关。相反,表达突变型p53的Phe - 132细胞进行类似的温度转换对MPM - 2免疫染色或细胞毒性均无影响。综上所述,我们的结果表明野生型p53至少在某些细胞类型中可以克服依托泊苷诱导的G2阻滞。这些数据提出了p53在化疗药物诱导的细胞死亡中的新作用,并且可能对基因治疗具有重要意义。

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