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Inhibition of ATR-dependent signaling by protoapigenone and its derivative sensitizes cancer cells to interstrand cross-link-generating agents in vitro and in vivo

机译:原型芹菜酮及其衍生物对ATR依赖性信号的抑制作用在体内外都使癌细胞对链间交联产生剂敏感

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摘要

[[abstract]]DNA damage caused during cancer treatment can rapidly activate the ataxia telangiectasia-mutated (ATM) and ATM and Rad3-related (ATR)-dependent phosphorylation of Chk2 and Chk1 kinases, which are hallmarks of the DNA damage response (DDR). Pharmacologic inhibition of ATR causes a synthetic lethal effect on ATM- or p53-defective cancers, suggesting that such inhibition is an effective way to improve the sensitivity of cancers to DNA-damaging agents. Here, both the natural compound protoapigenone (WYC02) and its synthetic derivative WYC0209 exhibited cytotoxic effects on various cancer cell lines. WYC02 causes chromosomal aberration in the mitotic spreads of Chinese hamster ovary cells. Interestingly, cancer cells did not exhibit typical DDR markers upon exposure to WYC02 and WYC0209 (WYCs). Further investigation into the molecular mechanisms of WYCs function revealed that they have a potential ability to inhibit DDR, particularly on activation of Chk1 and Fanconi anemia group D2 protein (FANCD2), but not Chk2. In this way, WYCs inhibited ATR-mediated DNA damage checkpoint and repair. Furthermore, when combined with the DNA cross-linking agent cisplatin, treatment with WYCs resulted in increased tumor sensitivity to interstrand cross-link-generating agents both in vitro and in vivo. Our results therefore especially implicate WYCs in enhancing tumor chemosensitivity when the ATR checkpoint is constitutively active in states of oncogene-driven replicative stress or tolerance to DNA-interfering agents.
机译:[[摘要]]在癌症治疗期间造成的DNA损伤可以迅速激活共济失调的毛细血管扩张突变(ATM)以及依赖ATM和Rad3相关(ATR)的Chk2和Chk1激酶磷酸化,这是DNA损伤反应(DDR)的标志)。 ATR的药理抑制作用可对ATM或p53缺陷型癌症产生合成致死作用,表明这种抑制作用是提高癌症对DNA损伤剂敏感性的有效方法。在这里,天然化合物原芹菜酮(WYC02)及其合成衍生物WYC0209均对多种癌细胞系表现出细胞毒性作用。 WYC02在中国仓鼠卵巢细胞的有丝分裂扩散中引起染色体畸变。有趣的是,癌细胞在暴露于WYC02和WYC0209(WYC)后没有显示出典型的DDR标记。对WYC功能的分子机制的进一步研究表明,它们具有抑制DDR的潜在能力,特别是在激活Chk1和Fanconi贫血D2组蛋白(FANCD2)而不是Chk2上。这样,WYC抑制了ATR介导的DNA损伤检查点和修复。此外,当与DNA交联剂顺铂组合使用时,在体外和体内,用WYC进行治疗都会增加肿瘤对链间交联产生剂的敏感性。因此,当ATR检查点在癌基因驱动的复制应激或对DNA干扰剂的耐受性状态下具有组成性活性时,我们的结果因此特别暗示WYCs在增强肿瘤化学敏感性中。

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    Wang, HC;

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  • 年度 2012
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