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缺乏聚ADP核糖聚合酶的小鼠细胞中p53的诱导缺陷但激活和功能正常。

Defective induction but normal activation and function of p53 in mouse cells lacking poly-ADP-ribose polymerase.

作者信息

Agarwal M L, Agarwal A, Taylor W R, Wang Z Q, Wagner E F, Stark G R

机构信息

Department of Molecular Biology, Research Institute, The Cleveland Clinic Foundation, Ohio 44195, USA.

出版信息

Oncogene. 1997 Aug 28;15(9):1035-41. doi: 10.1038/sj.onc.1201274.

Abstract

Poly-ADP-ribose polymerase (PARP) and p53 are both induced by DNA damage and each has been proposed to mediate the normal cellular response to damage. We find that embryo fibroblasts from PARP-null mice have a approximately twofold lower basal level of p53 and that the induction of p53 in response to DNA damage or nucleotide depletion is more than twofold less than in normal mouse cells. These factors combine to decrease the induced level of the p53 protein in PARP-deficient cells by 4-5-fold, compared to normal cells. However, there is virtually no decrease in the induction of p53 activity in PARP-deficient cells, as assayed with a p53-responsive promoter. Furthermore, cells lacking PARP arrest normally in G1 after DNA damage, in contrast to cells lacking p53, where this checkpoint is absent. Other p53-dependent properties, such as the mitotic spindle checkpoint and permissivity for gene amplification, are also normal in PARP-deficient cells. We conclude that the induced level of the p53 protein is governed by a combination of PARP-dependent and PARP-independent pathways and that the activation of p53 is largely PARP-independent. The results are consistent with a model in which the regulation of gene expression by p53 involves both increases in the amount of the protein and activation of p53 as a transcription factor.

摘要

聚-ADP-核糖聚合酶(PARP)和p53均由DNA损伤诱导产生,并且都被认为介导细胞对损伤的正常反应。我们发现,来自PARP基因敲除小鼠的胚胎成纤维细胞中p53的基础水平大约低两倍,并且在DNA损伤或核苷酸耗竭时p53的诱导水平比正常小鼠细胞低两倍以上。这些因素共同作用,使得PARP缺陷细胞中p53蛋白的诱导水平比正常细胞降低了4至5倍。然而,用p53反应性启动子检测时,PARP缺陷细胞中p53活性的诱导几乎没有降低。此外,与缺乏p53的细胞(不存在该检查点)不同,缺乏PARP的细胞在DNA损伤后通常在G1期停滞。PARP缺陷细胞中其他p53依赖性特性,如有丝分裂纺锤体检查点和基因扩增的允许性,也都是正常的。我们得出结论,p53蛋白的诱导水平受PARP依赖性和PARP非依赖性途径的共同调控,并且p53的激活在很大程度上是PARP非依赖性的。这些结果与一个模型一致,在该模型中,p53对基因表达的调控涉及蛋白质数量的增加和p53作为转录因子的激活。

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