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首页> 外文期刊>American Journal of Cancer Research >mTOR inhibition overcomes primary and acquired resistance to Wee1 inhibition by augmenting replication stress in epithelial ovarian cancers
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mTOR inhibition overcomes primary and acquired resistance to Wee1 inhibition by augmenting replication stress in epithelial ovarian cancers

机译:MTOR抑制通过在上皮性卵巢癌中加强复制应力来克服初级和获得的抗性抗性抗性抗性

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摘要

Epithelial ovarian cancer is characterized by universal TP53 mutations, which result in G1/S checkpoint deficiencies. Therefore, it is hypothesized that the abrogation of the G2/M checkpoint with Wee1 inhibitor might preferentially sensitize TP53-defective ovarian cancer cells. Given the extremely high molecular diversity in ovarian cancer, one approach to improving the clinical efficacy is to identify drug combinations that either broaden the applicable spectrum or circumvent resistance. Here, through a high-throughput unbiased proteomic profiling (RPPA), we found the complementary activated mTOR pathway contributes greatly to Wee1 inhibitor resistance. A combination of Wee1 and mTOR inhibits synergistically inhibiting tumor growth in ovarian cancer cell lines and patient-derived xenograft that closely mimic the heterogeneity of patient tumors. Mechanistically, dual Wee1/mTOR inhibition induced massive DNA replication stress, leading to fork stalling and DNA damage. Moreover, we found that the addition of nucleotide metabolic substrate dNTPs alleviated replication stress, restored the cell cycle and reduced apoptosis to some extent, supporting dNTPs depletion is necessary for the synergy between Wee1 and mTOR inhibits. These results suggest that our study opening up a wider therapeutic window of Wee1 inhibitor for the treatment in epithelial ovarian cancers.
机译:上皮卵巢癌的特征是普遍的TP53突变,导致G1 / S检查点缺陷。因此,假设具有WEE1抑制剂的G2 / M检查点的废除可能优先对TP53缺陷的卵巢癌细胞进行敏化。鉴于卵巢癌中的极高分子多样性,一种提高临床疗效的一种方法是鉴定扩大适用光谱或抗冲击性的药物组合。这里,通过高通量的非偏见蛋白质组学分析(RPPA),我们发现互补的活化的MTOR途径有助于WEE1抑制剂抗性。 WEE1和MTOR的组合抑制卵巢癌细胞系中的协同抑制肿瘤生长,患者衍生的异种移植物,其密切模仿患者肿瘤的异质性。机械上,双次蠕虫抑制诱导大量DNA复制应力,导致叉子停滞和DNA损伤。此外,我们发现,添加核苷酸代谢底物DNTPS缓解了复制应力,恢复了细胞周期并在一定程度上减少了细胞凋亡,对于WEE1和MTOR抑制之间的协同作用是必要的。这些结果表明,我们的研究在上皮细胞卵巢癌中的治疗中开辟了WEE1抑制剂的更广泛的治疗窗口。

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