首页> 外文期刊>Molecular cancer research: MCR >Inhibition of the ATR-CHK1 Pathway in Ewing Sarcoma Cells Causes DNA Damage and Apoptosis via the CDK2-Mediated Degradation of RRM2
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Inhibition of the ATR-CHK1 Pathway in Ewing Sarcoma Cells Causes DNA Damage and Apoptosis via the CDK2-Mediated Degradation of RRM2

机译:抑制EWINGSARCOMA细胞中的ATR-CHK1途径导致DNA损伤和通过CDK2介导的RRM2的降解导致DNA损伤和细胞凋亡

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摘要

Inhibition of ribonucleotide reductase (RNR), the rate-limiting enzyme in the synthesis of deoxyribonucleotides, causes DNA replication stress and activates the ataxia telangiectasia and rad3-related protein (ATR)-checkpoint kinase 1 (CHK1) pathway. Notably, a number of different cancers, including Ewing sarcoma tumors, are sensitive to the combination of RNR and ATR-CHK1 inhibitors. However, multiple, overlapping mechanisms are reported to underlie the toxicity of ATR-CHK1 inhibitors, both as single agents and in combination with RNR inhibitors, toward cancer cells. Here, we identified a feedback loop in Ewing sarcoma cells in which inhibition of the ATR-CHK1 pathway depletes RRM2, the small subunit of RNR, and exacerbates the DNA replication stress and DNA damage caused by RNR inhibitors. Mechanistically, we identified that the inhibition of ATR-CHK1 activates CDK2, which targets RRM2 for degradation via the proteasome. Similarly, activation of CDK2 by inhibition or knockdown of the WEE1 kinase also depletes RRM2 and causes DNA damage and apoptosis. Moreover, we show that the concurrent inhibition of ATR and WEE1 has a synergistic effect in Ewing sarcoma cells. Overall, our results provide novel insight into the response to DNA replication stress, as well as a rationale for targeting the ATR, CHK1, and WEE1 pathways, in Ewing sarcoma tumors.
机译:核糖核苷酸还原酶(RNR),脱氧核糖核苷酸合成中的速率限制酶的抑制导致DNA复制应力并激活Ataxia Telanciectasia和Rad3相关蛋白(ATR)--Checkpoint激酶1(CHK1)途径。值得注意的是,许多不同的癌症,包括EWING SARCOMA肿瘤,对RNR和ATR-CHK1抑制剂的组合敏感。然而,据报道,多种重叠的机制利于ATR-CHK1抑制剂的毒性,无论是单一药剂还是与RNR抑制剂相结合,往癌细胞。在这里,我们鉴定了EWING SARCOMA细胞中的反馈环,其中抑制ATR-CHK1途径耗尽RRM2,RNR的小亚基,加剧了由RNR抑制剂引起的DNA复制应力和DNA损伤。机械地,我们认为ATR-CHK1的抑制活化CDK2,其靶向RRM2通过蛋白酶体降解。类似地,通过WEE1激酶的抑制或敲击激活CDK2,也耗尽了RRM2并导致DNA损伤和细胞凋亡。此外,我们表明ATR和WEE1的并发抑制在育种肉瘤细胞中具有协同作用。总体而言,我们的结果为对DNA复制应力的反应提供了新的洞察力,以及针对ATR,CHK1和WEE1途径的理由,在eWINGSARCOMA肿瘤中靶向ATR,CHK1和WEE1途径。

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