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在无可检测到的DNA损伤情况下,核糖核苷酸耗竭诱导的一种可逆的、p53依赖的G0/G1细胞周期停滞。

A reversible, p53-dependent G0/G1 cell cycle arrest induced by ribonucleotide depletion in the absence of detectable DNA damage.

作者信息

Linke S P, Clarkin K C, Di Leonardo A, Tsou A, Wahl G M

机构信息

Gene Expression Lab, The Salk Institute, La Jolla, California 92037, USA.

出版信息

Genes Dev. 1996 Apr 15;10(8):934-47. doi: 10.1101/gad.10.8.934.

DOI:10.1101/gad.10.8.934
PMID:8608941
Abstract

Cells with a functional p53 pathway undergo a G0/G1 arrest or apoptosis when treated with gamma radiation or many chemotherapeutic drugs. It has been proposed that DNA damage is the exclusive signal that triggers the arrest response. However, we found that certain ribonucleotide biosynthesis inhibitors caused a p53-dependent G0 or early G1 arrest in the absence of replicative DNA synthesis or detectable DNA damage in normal human fibroblasts. CTP, GTP, or UTP depletion alone was sufficient to induce arrest. In contrast to the p53-dependent response to DNA damage, characterized by long-term arrest and irregular cellular morphologies, the antimetabolite-induced arrest was highly reversible and cellular morphologies remained relatively normal. Both arrest responses correlated with prolonged induction of p53 and the Cdk inhibitor P21(WAF1/CIP1/SDI1) and with dephosphorylation of pRb. Thus, we propose that p53 can serve as a metabolite sensor activated by depletion of ribonucleotides or products or processes dependent on ribonucleotides. Accordingly, p53 may play a role in inducing a quiescence-like arrest state in response to nutrient challenge and a senescence-like arrest state in response to DNA damage. These results have important implications for the mechanisms by which p53 prevents the emergence of genetic variants and for developing more effective approaches to chemotherapy based on genotype.

摘要

具有功能性p53通路的细胞在接受γ射线照射或使用多种化疗药物处理时会经历G0/G1期阻滞或凋亡。有人提出DNA损伤是触发阻滞反应的唯一信号。然而,我们发现某些核糖核苷酸生物合成抑制剂在正常人类成纤维细胞中,在没有复制性DNA合成或可检测到的DNA损伤的情况下,会导致p53依赖的G0期或早期G1期阻滞。单独的CTP、GTP或UTP耗竭就足以诱导阻滞。与以长期阻滞和不规则细胞形态为特征的对DNA损伤的p53依赖反应不同,抗代谢物诱导的阻滞是高度可逆的,细胞形态保持相对正常。两种阻滞反应都与p53和细胞周期蛋白依赖性激酶抑制剂P21(WAF1/CIP1/SDI1)的延长诱导以及pRb的去磷酸化相关。因此,我们提出p53可以作为一种代谢物传感器,由核糖核苷酸或依赖于核糖核苷酸的产物或过程的耗竭激活。相应地, p53可能在响应营养挑战时诱导类似静止的阻滞状态以及在响应DNA损伤时诱导类似衰老的阻滞状态中发挥作用。这些结果对于p53防止遗传变异出现的机制以及基于基因型开发更有效的化疗方法具有重要意义。

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