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MET Inhibition Results in DNA Breaks and Synergistically Sensitizes Tumor Cells to DNA-Damaging Agents Potentially by Breaching a Damage-Induced Checkpoint Arrest

机译:MET抑制导致DNA断裂,并可能通过突破损伤诱导的检查点逮捕而协同地使肿瘤细胞对DNA损伤剂敏感。

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摘要

While recent studies implicate that signaling through the receptor tyrosine kinase MET protects cancer cells from DNA damage, molecular events linking MET to the DNA damage response machinery are largely unknown. Here, we studied the impact of MET inhibition by the small molecule PHA665752 on cytotoxicity induced by DNA-damaging agents. We demonstrate that PHA665752 reduces clonogenic survival of tumor cells with MET overexpression when combined with ionizing radiation and synergistically cooperates with ionizing radiation or adriamycin to induce apoptosis. In search of mechanisms underlying the observed synergism, we show that PHA665752 alone considerably increases γH2AX levels, indicating the accumulation of double-strand DNA breaks. In addition, PHA665752 treatment results in sustained high levels of γH2AX and phosphorylated ATM postirradiation, strengthening the assumption that MET inhibition attenuates postdamage DNA repair. PHA665752, alone or in combination with irradiation, leads also to a massive increase of γH2AX tyrosine phosphorylation and its subsequent interaction with the proapoptotic kinase JNK1. Finally, MET inhibition reduces activation of ATR, CHK1, and CDC25B and abrogates an associated DNA damage–induced S phase arrest. This indicates that MET inhibition compromises a critical damage-dependent checkpoint that may enable DNA-damaged cells to exit cell cycle arrest before repair is completed.
机译:尽管最近的研究表明,通过受体酪氨酸激酶MET进行的信号保护可以保护癌细胞免受DNA损伤,但是将MET与DNA损伤反应机制联系起来的分子事件却鲜为人知。在这里,我们研究了小分子PHA665752对MET的抑制作用对DNA损伤剂诱导的细胞毒性的影响。我们证明,PHA665752与电离辐射结合时可降低MET过表达的肿瘤细胞的克隆形成存活,并与电离辐射或阿霉素协同协同诱导凋亡。在寻找观察到的协同作用的潜在机制中,我们显示了单独的PHA665752会显着增加γH2AX水平,表明双链DNA断裂的积累。此外,PHA665752处理可导致持续高水平的γH2AX和磷酸化的ATM辐照后,从而强化了MET抑制会削弱损伤后DNA修复的假设。单独使用PHA665752或与辐射组合使用,也会导致γH2AX酪氨酸磷酸化的大量增加以及其随后与促凋亡激酶JNK1的相互作用。最后,MET抑制作用会降低ATR,CHK1和CDC25B的激活,并消除相关的DNA损伤引起的S期阻滞。这表明MET抑制损害了关键的依赖损伤的检查点,该检查点可能使DNA损伤的细胞在修复完成之前退出细胞周期停滞。

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