首页> 外文期刊>Molecular cancer research: MCR >Involvement of the ATR- and ATM-dependent checkpoint responses in cell cycle arrest evoked by pierisin-1.
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Involvement of the ATR- and ATM-dependent checkpoint responses in cell cycle arrest evoked by pierisin-1.

机译:ATR依赖和ATM依赖的检查点反应参与Pierisin-1诱发的细胞周期停滞。

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摘要

Pierisin-1 identified from the cabbage butterfly, Pieris rapae, is a novel mono-ADP-ribosylating toxin that transfers the ADP-ribose moiety of NAD at N(2) of dG in DNA. Resulting mono-ADP-ribosylated DNA adducts cause mutations and the induction of apoptosis. However, little is known about checkpoint responses elicited in mammalian cells by the formation of such bulky DNA adducts. In the present study, it was shown that DNA polymerases were blocked at the specific site of mono-ADP-ribosylated dG, which might lead to the replication stress. Pierisin-1 treatment of HeLa cells was found to induce an intra-S-phase arrest through both ataxia telangiectasia mutated (ATM) and Rad3-related (ATR) and ATM pathways, and ATR pathway also contributes to a G(2)-M-phase delay. In the colony survival assays, Rad17(-/-) DT40 cells showed greater sensitivity to pierisin-1-induced cytotoxicity than wild-type and ATM(-/-) DT40 cells, possibly due to defects of checkpoint responses, such as the Chk1 activation. Furthermore, apoptotic 50-kb DNA fragmentation was observed in the HeLa cells, which was well correlated with occurrence of phosphorylation of Chk2. These results thus suggest that pierisin-1 treatment primarily activates ATR pathway and eventually activates ATM pathway as a result of the induction of apoptosis. From these findings, it is suggested that mono-ADP-ribosylation of DNA causes a specific type of fork blockage that induces checkpoint activation and signaling.
机译:从卷心菜蝴蝶菜青虫中鉴定出的Pierisin-1是一种新颖的单ADP-核糖基化毒素,可将NAD的ADP-核糖部分转移到DNA中dG的N(2)处。所得的单-ADP-核糖基化的DNA加合物引起突变并诱导凋亡。但是,关于通过这种大体积DNA加合物的形成在哺乳动物细胞中引起的检查点反应知之甚少。在本研究中,表明DNA聚合酶在单ADP-核糖基化dG的特定位点被封闭,这可能导致复制压力。发现对HeLa细胞的Pierisin-1治疗可通过共济失调毛细血管扩张突变(ATM)和Rad3相关(ATR)和ATM途径诱导S期内停滞,并且ATR途径也有助于G(2)-M相延迟。在菌落存活试验中,Rad17(-/-)DT40细胞对Pierisin-1诱导的细胞毒性的敏感性高于野生型和ATM(-/-)DT40细胞,这可能是由于检查点反应(例如Chk1)的缺陷激活。此外,在HeLa细胞中观察到凋亡的50-kb DNA片段化,这与Chk2磷酸化的发生密切相关。因此,这些结果表明,由于细胞凋亡的诱导,pierisin-1处理主要激活ATR途径并最终激活ATM途径。根据这些发现,建议DNA的单ADP-核糖基化会引起特定类型的叉子阻塞,从而诱导检查点激活和信号传导。

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