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用DNA损伤剂处理后,两种NIH3T3亚克隆细胞中不同的p53介导的G1/S检查点反应。

Distinct p53-mediated G1/S checkpoint responses in two NIH3T3 subclone cells following treatment with DNA-damaging agents.

作者信息

Huang T S, Kuo M L, Shew J Y, Chou Y W, Yang W K

机构信息

Clinical Research Institute, National Health Research Institutes, VGH-Taipei, Taiwan, ROC.

出版信息

Oncogene. 1996 Aug 1;13(3):625-32.

PMID:8760304
Abstract

N3T3 and P-3T3 cells, originally isolated from a NIH3T3 cell clone on the basis of their negative and positive transformation by v-Abl, v-Src and Bcr-Abl, were previously found to show distinct cyclin activity changes following 12-O-tetradecanoylphorbol-13-acetate (TPA) treatment, which is anti-mitogenic for N-3T3 cells and mitogenic for P-3T3 cells. We have found in this study that, while the G1/S arrest and cell death induced by serum starvation and TPA treatment in N-3T3 cells did not involve p53-mediated checkpoint or apoptosis, N-3T3 and P-3T3 cells evidently responded differently in these aspects of cell cycle regulation to DNA-damaging agents, methylmethane sulfonate (MMS) and gamma-radiation. In N-3T3 cells, DNA damages elicit cell growth arrest at G1/S transition with concomitant accumulation of p53 and p53-inducible Waf1/Cip1 proteins and also signs of apoptosis such as DNA ladder patterns and apoptotic (subgenomic) peak in flow cytograph. Conversely, P-3T3 cells treated with the DNA-damaging agents showed no cell cycle interruption nor accumulation of p53 or Waf1/Cip1. However, both P-3T3 and N-3T3 cells showed the same p53 protein half-life of 40 min or less, the same wild-type p53 DNA sequence and the same co-immunoprecipitable cellular proteins in complexes with p53, suggesting that an alteration in a signal transduction pathway upstream of p53 might account for the evasion of p53-mediated G1 checkpoint in P-3T3 cells.

摘要

N3T3和P - 3T3细胞最初是从NIH3T3细胞克隆中分离出来的,依据它们被v - Abl、v - Src和Bcr - Abl进行阴性和阳性转化的情况而定。先前发现,在用12 - O - 十四烷酰佛波醇 - 13 - 乙酸酯(TPA)处理后,它们显示出不同的细胞周期蛋白活性变化,TPA对N - 3T3细胞具有抗有丝分裂作用,对P - 3T3细胞具有促有丝分裂作用。我们在本研究中发现,虽然血清饥饿和TPA处理在N - 3T3细胞中诱导的G1/S期阻滞和细胞死亡不涉及p53介导的检查点或凋亡,但N - 3T3和P - 3T3细胞在细胞周期调控的这些方面对DNA损伤剂甲磺酸甲酯(MMS)和γ射线的反应明显不同。在N - 3T3细胞中,DNA损伤导致细胞在G1/S期转换时生长停滞,同时伴有p53和p53诱导的Waf1/Cip1蛋白积累,以及凋亡迹象,如DNA梯状条带模式和流式细胞仪中的凋亡(亚基因组)峰。相反,用DNA损伤剂处理的P - 3T3细胞未显示细胞周期中断,也没有p53或Waf1/Cip1的积累。然而,P - 3T3和N - 3T3细胞的p53蛋白半衰期均为40分钟或更短,p53的野生型DNA序列相同,与p53形成复合物的共免疫沉淀细胞蛋白也相同,这表明p53上游信号转导途径的改变可能是P - 3T3细胞逃避p53介导的G1检查点的原因。

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