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Induction of DNA breaks and apoptosis in crosslink-hypersensitive V79 cells by the cytostatic drug β-D-glucosyl-ifosfamide mustard

机译:细胞抑制药物β-D-葡萄糖基-异环磷酰胺芥末诱导交联超敏性V79细胞DNA断裂和凋亡

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摘要

To study molecular aspects of cytotoxicity of the anticancer drug β-D-glucose-ifosfamide mustard we investigated the potential of the agent to induce apoptosis and DNA breakage. Since β-D-glucose-ifosfamide mustard generates DNA interstrand crosslinks, we used as an in vitro model system a pair of isogenic Chinese hamster V79 cells differing in their sensitivity to crosslinking agents. CL-V5B cells are dramatically more sensitive (30-fold based on D10 values) to the cytotoxic effects of β-D-glucose-ifosfamide mustard as compared to parental V79B cells. After 48 h of pulse-treatment with the agent, sensitive cells but not the resistant parental line undergo apoptosis and necrosis, with apoptosis being the predominant form of cell death (70 and 20% of apoptosis and necrosis, respectively). Apoptosis increased as a function of dose and was accompanied by induction of DNA double-strand breaks in the hypersensitive cells. Furthermore, a strong decline in the level of Bcl-2 protein and activation of caspases-3, -8 and -9 were observed. The resistant parental cells were refractory to all these parameters. Bcl-2 decline in the sensitive cells preceded apoptosis, and transfection-mediated overexpression of Bcl-2 protected at least in part from apoptosis. From the data we hypothesize that non-repaired crosslinks induced by β-D-glucose-ifosfamide mustard are transformed into double-strand breaks which trigger apoptosis via a Bcl-2 dependent pathway.
机译:为了研究抗癌药物β-D-葡萄糖-异环磷酰胺芥菜的细胞毒性的分子方面,我们研究了该药物诱导细胞凋亡和DNA断裂的潜力。由于β-D-葡萄糖-异环磷酰胺芥末产生DNA链间交联,我们将一对对交联剂敏感性不同的同基因中国仓鼠V79细胞用作体外模型系统。与亲代V79B细胞相比,CL-V5B细胞对β-D-葡萄糖-异环磷酰胺芥子的细胞毒性作用更加敏感(基于D10值,是30倍)。在用该药物脉冲处理48小时后,敏感细胞而非抗性亲本细胞发生凋亡和坏死,凋亡是细胞死亡的主要形式(分别为凋亡和坏死的70%和20%)。细胞凋亡随剂量增加而增加,并伴随着超敏细胞中DNA双链断裂的诱导。此外,观察到Bcl-2蛋白水平的强烈下降和胱天蛋白酶3,-8和-9的激活。抗性亲代细胞对所有这些参数均是难治的。敏感细胞中Bcl-2的下降先于凋亡,转染介导的Bcl-2的过表达至少部分保护了细胞凋亡。根据数据,我们假设由β-D-葡萄糖-异环磷酰胺芥末诱导的未修复交联被转化为双链断裂,从而通过Bcl-2依赖性途径触发了细胞凋亡。

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