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Regulation of nucleotide metabolism by mutant p53 contributes to its gain-of-function activities

机译:突变体p53对核苷酸代谢的调节有助于其功能获得活动

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摘要

Mutant p53 (mtp53) is an oncogene that drives cancer cell proliferation. Here we report that mtp53 associates with the promoters of numerous nucleotide metabolism genes (NMG). Mtp53 knockdown reduces NMG expression and substantially depletes nucleotide pools, which attenuates GTP-dependent protein activity and cell invasion. Addition of exogenous guanosine or GTP restores the invasiveness of mtp53 knockdown cells, suggesting that mtp53 promotes invasion by increasing GTP. In addition, mtp53 creates a dependency on the nucleoside salvage pathway enzyme deoxycytidine kinase for the maintenance of a proper balance in dNTP pools required for proliferation. These data indicate that mtp53-harbouring cells have acquired a synthetic sick or lethal phenotype relationship with the nucleoside salvage pathway. Finally, elevated expression of NMG correlates with mutant p53 status and poor prognosis in breast cancer patients. Thus, mtp53's control of nucleotide biosynthesis has both a driving and sustaining role in cancer development.
机译:p53突变体(mtp53)是驱动癌细胞增殖的致癌基因。在这里我们报告mtp53与许多核苷酸代谢基因(NMG)的启动子相关联。 Mtp53基因敲低可减少NMG表达并实质上耗尽核苷酸库,从而减弱GTP依赖性蛋白活性和细胞侵袭。外源鸟嘌呤或GTP的添加恢复了mtp53敲低细胞的侵袭性,表明mtp53通过增加GTP促进侵袭。另外,mtp53对核苷挽救途径酶脱氧胞苷激酶产生依赖性,以维持增殖所需的dNTP库中的适当平衡。这些数据表明,携带mtp53的细胞已与核苷挽救途径获得了合成的病态或致死表型关系。最后,NMG的高表达与乳腺癌患者的突变p53状态和不良预后相关。因此,mtp53对核苷酸生物合成的控制在癌症发展中具有驱动和维持作用。

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