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Replication and ribosomal stress induced by targeting pyrimidine synthesis and cellular checkpoints suppress p53-deficient tumors

机译:通过靶向嘧啶合成和细胞检查点诱导的复制和核糖体应激抑制p53缺陷肿瘤

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p53-mutated tumors often exhibit increased resistance to standard chemotherapy and enhanced metastatic potential. Here we demonstrate that inhibition of dihydroorotate dehydrogenase (DHODH), a key enzyme of the de novo pyrimidine synthesis pathway, effectively decreases proliferation of cancer cells via induction of replication and ribosomal stress in a p53- and checkpoint kinase 1 (Chk1)-dependent manner. Mechanistically, a block in replication and ribosomal biogenesis result in p53 activation paralleled by accumulation of replication forks that activate the ataxia telangiectasia and Rad3-related kinase/Chk1 pathway, both of which lead to cell cycle arrest. Since in the absence of functional p53 the cell cycle arrest fully depends on Chk1, combined DHODH/Chk1 inhibition in p53-dysfunctional cancer cells induces aberrant cell cycle re-entry and erroneous mitosis, resulting in massive cell death. Combined DHODH/Chk1 inhibition effectively suppresses p53-mutated tumors and their metastasis, and therefore presents a promising therapeutic strategy for p53-mutated cancers.
机译:P53突变的肿瘤通常表现出对标准化疗的抗性增加和增强的转移潜力。在这里,我们证明了抑制二氢脱氢酶(Dhodh),脱硝嘧啶合成途径的关键酶,通过诱导复制和核糖体应激在P53-和检查点激酶1(CHK1) - 依赖性方式中有效地降低了癌细胞的增殖。机械地,复制中的块和核糖体生物发生导致P53激活并平行于复制叉的积累,该复制叉的积累,其激活共济失调毛细管扩张和RAD3相关激酶/ CHK1途径,这两者都导致细胞周期停滞。由于在没有功能性P53的细胞周期停滞完全取决于CHK1,因此在P53-功能障碍癌细胞中组合DHODH / CHK1抑制诱导异常细胞周期重新进入和错误有丝分裂,导致巨大的细胞死亡。组合的DHODH / CHK1抑制有效地抑制了P53突变的肿瘤及其转移,因此为P53突变的癌症提出了有希望的治疗策略。

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