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USP1 links platinum resistance to cancer cell dissemination by regulating Snail stability

机译:USP1通过调节Snail的稳定性将铂的抗性与癌细胞的扩散联系起来

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Resistance to platinum-based chemotherapy is a common event in patients with cancer, generally associated with tumor dissemination and metastasis. Whether platinum treatment per se activates molecular pathways linked to tumor spreading is not known. Here, we report that the ubiquitin-specific protease 1 (USP1) mediates ovarian cancer cell resistance to platinum, by regulating the stability of Snail, which, in turn, promotes tumor dissemination. At the molecular level, we observed that upon platinum treatment, USP1 is phosphorylated by ATM and ATR and binds to Snail. Then, USP1 de-ubiquitinates and stabilizes Snail expression, conferring resistance to platinum, increased stem cell–like features, and metastatic ability. Consistently, knockout or pharmacological inhibition of USP1 increased platinum sensitivity and decreased metastatic dissemination in a Snail-dependent manner. Our findings identify Snail as a USP1 target and open the way to a novel strategy to overcome platinum resistance and more successfully treat patients with ovarian cancer.
机译:对铂类化学疗法的耐药性在癌症患者中很常见,通常与肿瘤的扩散和转移有关。铂治疗本身是否能激活与肿瘤扩散有关的分子途径尚不清楚。在这里,我们报道泛素特异性蛋白酶1(USP1)通过调节Snail的稳定性来介导卵巢癌细胞对铂的抗性,进而促进肿瘤的扩散。在分子水平上,我们观察到铂处理后,USP1被ATM和ATR磷酸化并与Snail结合。然后,USP1去泛素化并稳定Snail的表达,赋予对铂的抗性,增强的干细胞样特征和转移能力。一致地,USP1的敲除或药理抑制作用以Snail依赖性方式增加了铂的敏感性并降低了转移扩散。我们的发现将Snail确定为USP1靶标,并为克服铂类耐药性并更成功地治疗卵巢癌患者的新型策略打开了道路。

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