Tetrandrine: a potent abrogator of G2 checkpoint function in tumor cells and its mechanism.

Xin-Chen Sun, Hong-Yan Cheng, Yu-Xia Deng, Rong-Guang Shao, Jun Ma
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Abstract

Objective: To assess the ability of tetrandrine (Tet) to enhance the sensitivity to irradiation and its mechanism in cell lines of human breast cancer p53-mutant MCF-7/ADR, p53-wild-type MCF-7 and human colon carcinoma p53-mutant HT-29 as well as in C26 colorectal carcinoma-bearing BALB/c mice.

Methods: MCF-7/ADR, HT-29 and MCF-7 cells were exposed to irradiation in the absence or presence of tetrandrine. The effect of Tet on the cytotoxicity of X-irradiation in these three cells was determined and the effect of tetrandrine on cell cycle arrest induced by irradiation in its absence or presence was studied by flow cytometry. Moreover, mitotic index measurement determined mitosis of cells to enter mitosis. Western blotting was employed to detect cyclin B 1 and Cdc2 proteins in extracts from irradiated or non-irradiated cells of MCF-7/ADR, HT-29 and MCF-7 treated with tetrandrine at various concentrations. Tumor growth delay assay was conducted to determine the radio-sensitization of tetrandrine in vivo.

Results: Clonogenic assay showed that tetrandrine markedly enhanced the lethal effect of X-rays on p53-mutant MCF-7/ADR and HT-29 cells and the sensitization enhancement ratio (SER) of tetrandrine was 1.51 and 1.63, but its SER was only 1.1 in p53-wt MCF-7 cells. Irradiated p53-mutant MCF-7/ADR and HT-29 cells were only arrested in G2/M phase while MCF-7 cells were arrested in G1 and G2/M phases. Radiation-induced G2 phase arrests were abrogated by tetrandrine in a concentration-dependent manner in MCF-7/ADR and HT-29 cells, whereas redistribution within MCF-7 cell cycle changed slightly. The proportion of cells in M phase increased from 1.3% to 14.7% in MCF-7/ADR cells, and from 1.5% to 13.2% in HT-29 cells, but 2.4% to 7.1% in MCF-7 cells. Furthermore, the levels of cyclin B 1 and Cdc2 expression decreased after X-irradiation in MCF-7/ADR and HT-29 cells, and the mitotic index was also lower. Tet could reverse the decrease and induce the irradiated cells to enter mitosis (M phase). Endosomatic experiment showed that tetrandrine caused tumor growth delay in irradiated mice.

Conclusion: Tetrandrine boosts the cell killing activity of irradiation both in vitro and in vivo. Tetrandrine is a potent abrogator for G2 checkpoint control and can sensitize the cells to radiation.

粉防己碱:肿瘤细胞中G2检查点功能的有效抑制剂及其机制。
目的:探讨粉防己碱(Tet)对人乳腺癌p53-突变体MCF-7/ADR、p53-野生型MCF-7和人结肠癌p53-突变体HT-29细胞系以及C26结直肠癌BALB/c小鼠的辐射敏感性增强作用及其机制。方法:将MCF-7/ADR、HT-29和MCF-7细胞分别暴露于粉防己碱不存在或不存在的情况下。用流式细胞术研究了Tet对x射线照射下三种细胞的细胞毒性的影响,并研究了粉防己碱对x射线照射下细胞周期阻滞的影响。此外,有丝分裂指数测定决定细胞有丝分裂是否进入有丝分裂。采用Western blotting检测不同浓度粉防己碱处理的MCF-7/ADR、HT-29和MCF-7辐照或未辐照细胞提取物中的细胞周期蛋白b1和Cdc2蛋白。采用肿瘤生长延迟试验测定粉防己碱在体内的放射致敏性。结果:克隆实验显示,粉防己碱显著增强x射线对p53突变型MCF-7/ADR和HT-29细胞的致敏增强比(SER)分别为1.51和1.63,而在p53-wt型MCF-7细胞中其SER仅为1.1。辐照的p53突变体MCF-7/ADR和HT-29细胞仅在G2/M期被阻滞,而MCF-7细胞在G1和G2/M期被阻滞。在MCF-7/ADR和HT-29细胞中,粉防己碱以浓度依赖的方式消除了辐射诱导的G2期阻滞,而MCF-7细胞周期内的再分布略有改变。MCF-7/ADR细胞的M期细胞比例从1.3%增加到14.7%,HT-29细胞的M期细胞比例从1.5%增加到13.2%,而MCF-7细胞的M期细胞比例从2.4%增加到7.1%。此外,x射线照射后MCF-7/ADR和HT-29细胞的cyclin b1和Cdc2表达水平降低,有丝分裂指数也降低。Tet能逆转这种减少,诱导辐照细胞进入有丝分裂(M期)。体内实验表明,粉防己碱对辐照小鼠的肿瘤生长有延缓作用。结论:粉防己碱在体外和体内均能增强辐照对细胞的杀伤活性。粉防己碱是G2检查点控制的有效抑制剂,可以使细胞对辐射敏感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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