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替莫唑胺的吡咯并四嗪酮脱氮类似物诱导Jurkat细胞系凋亡:微管蛋白聚合抑制的参与

Pyrrolotetrazinones deazaanalogues of temozolomide induce apoptosis in Jurkat cell line: involvement of tubulin polymerization inhibition.

作者信息

Viola Giampietro, Cecconet Laura, Leszl Anna, Basso Giuseppe, Brun Paola, Salvador Alessia, Dall'Acqua Francesco, Diana Patrizia, Barraja Paola, Cirrincione Girolamo

机构信息

Dipartimento di Scienze Farmaceutiche, University of Padova, Padua, Italy.

出版信息

Cancer Chemother Pharmacol. 2009 Nov;64(6):1235-51. doi: 10.1007/s00280-009-0994-9. Epub 2009 Apr 11.

Abstract

PURPOSE

Pyrrolotetrazinones are a new class of azolotetrazinones endowed with a high, remarkable antiproliferative activity in human tumor cultured cells. They hold the deaza skeleton of the antitumor drug temozolomide, although preliminary investigations indicated a different mechanism of action. To understand their mechanism(s) of action along with their target at molecular level, four derivatives were selected on the basis of their activity on a panel of human tumor cell lines and they were investigated in depth in a T leukemia cell line (Jurkat).

METHODS AND RESULTS

Flow cytometric analysis of cell cycle after treatment with pyrrolotetrazinones has demonstrated that they were able to induce an arrest of the cell cycle in G2/M phase. This effect was accompanied by apoptosis of the treated cells which is further characterized by exposure of phosphatidylserine on the external surface of the cell membranes. Mitochondria were strongly involved in the apoptotic pathway as demonstrated by the induced mitochondrial depolarization, generation of reactive oxygen species, and activation of caspase-3. Western blot analysis showed that Bcl-2 expression was down regulated whereas the proapototic protein Bax was upregulated in a time dependent manner. Moreover, these compounds induced a clear increase in the mitotic index, and inhibited microtubule assembly in vitro indicating that pyrrolotetrazinones, at variance with temozolomide, involved an efficacious inhibition of tubulin polymerization in their mechanism of action. Interestingly compound 3 at the concentration of 50 mg/kg body weight significantly inhibited in vivo the growth of a syngeneic hepatocellular carcinoma in Balb/c mice.

CONCLUSION

These results suggest that pyrrolotetrazinones inhibit microtubule polymerization, induce G2/M arrest of cell cycle and cause apoptosis through the mitochondrial pathway identifying them as novel effective antimitotic agents with potential for clinical development.

摘要

目的

吡咯并四嗪酮是一类新型的氮杂四嗪酮,在人肿瘤培养细胞中具有高度显著的抗增殖活性。它们具有抗肿瘤药物替莫唑胺的脱氮骨架,尽管初步研究表明其作用机制不同。为了在分子水平上了解它们的作用机制及其靶点,根据它们对一组人肿瘤细胞系的活性选择了四种衍生物,并在T白血病细胞系(Jurkat)中进行了深入研究。

方法与结果

用吡咯并四嗪酮处理后对细胞周期进行流式细胞术分析表明,它们能够诱导细胞周期在G2/M期停滞。这种作用伴随着处理细胞的凋亡,其进一步特征是磷脂酰丝氨酸暴露于细胞膜外表面。线粒体强烈参与凋亡途径,这通过诱导的线粒体去极化、活性氧的产生和半胱天冬酶-3的激活得以证明。蛋白质免疫印迹分析表明,Bcl-2表达下调,而促凋亡蛋白Bax以时间依赖性方式上调。此外,这些化合物使有丝分裂指数明显增加,并在体外抑制微管组装,表明吡咯并四嗪酮与替莫唑胺不同,在其作用机制中涉及对微管蛋白聚合的有效抑制。有趣的是,化合物3在50mg/kg体重的浓度下在体内显著抑制了Balb/c小鼠同基因肝细胞癌 的生长。

结论

这些结果表明,吡咯并四嗪酮抑制微管聚合,诱导细胞周期G2/M期停滞,并通过线粒体途径导致凋亡,确定它们为具有临床开发潜力的新型有效抗有丝分裂剂。

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