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p53和ATM基因产物在G1/S和S期检查点调控中的要求。

Requirements for p53 and the ATM gene product in the regulation of G1/S and S phase checkpoints.

作者信息

Xie G, Habbersett R C, Jia Y, Peterson S R, Lehnert B E, Bradbury E M, D'Anna J A

机构信息

The Life Sciences Division, Los Alamos National Laboratory, New Mexico 87545, USA.

出版信息

Oncogene. 1998 Feb 12;16(6):721-36. doi: 10.1038/sj.onc.1201793.

Abstract

We investigated the requirements for protein p53 and the ATM gene product in radiation-induced inhibition of DNA synthesis and regulation of the cyclin E/ and cyclin A/cyclin dependent kinases (Cdks). Wild type (WT) mouse lung fibroblasts (MLFs), p53(-/-) knock-out MLFs, normal human skin fibroblasts (HSF-55), and human AT skin fibroblasts (GM02052) were used in the investigations. The absence of p53 had no significant effect on the inhibition or recovery of DNA synthesis throughout the S phase, as determined from BrdU labeling and flow cytometry, or the rapid inhibition of cyclin A/Cdks. Gamma radiation (8 Gy) inhibited DNA synthesis and progression into G2 during the first 3 h after irradiation, and the recovery of these processes occurred at similar rates in both WT and p53(-/-) MLFs. The cyclin A/Cdks were inhibited 55-70% at 1 h after irradiation in both cell types, but p21WAF1/Cip1 levels or p21 interaction with Cdk2 did not increase in the irradiated p53(-/-) MLFs. Although p53(-/-) MLFs do not exhibit prolonged arrest at a G1 checkpoint, radiation did induce a rapid 20% reduction and small super-recovery of cyclin E/Cdk2 within 1-2 h after irradiation. Similar inhibition and recovery of cyclin E/Cdk2 previously had been associated with regulation of transient G1 delay and the inhibition of initiation at an apparent G1/S checkpoint in Chinese hamster cells. In contrast, loss of the ATM gene product abrogated transient cyclin E/Cdk2 inhibition, most inhibition of DNA synthesis and all, but a 10-15% inhibition, of the cyclin A/Cdks. The results indicate that neither p53 nor p21 is required for transient inhibition of cyclin E/Cdk2 associated with the G1/S checkpoint or for inhibition of DNA synthesis at 'checkpoints' within the S phase. Conversely, the ATM gene product appears to be essential for regulation of the G1/S checkpoint and for inhibition of DNA replication associated with the inhibition of cyclin A/Cdk2. Differential aspects of DNA synthesis inhibition among cell types are presented and discussed in the context of S phase checkpoints.

摘要

我们研究了蛋白质p53和ATM基因产物在辐射诱导的DNA合成抑制以及细胞周期蛋白E/细胞周期蛋白A/细胞周期蛋白依赖性激酶(Cdks)调控中的需求。研究中使用了野生型(WT)小鼠肺成纤维细胞(MLFs)、p53基因敲除的MLFs、正常人皮肤成纤维细胞(HSF - 55)以及人AT皮肤成纤维细胞(GM02052)。通过BrdU标记和流式细胞术测定,p53的缺失对整个S期DNA合成的抑制或恢复没有显著影响,对细胞周期蛋白A/Cdks的快速抑制也无显著影响。γ射线(8 Gy)在照射后的前3小时抑制DNA合成并阻止细胞进入G2期,WT和p53基因敲除的MLFs中这些过程的恢复速率相似。两种细胞类型在照射后1小时,细胞周期蛋白A/Cdks均被抑制55 - 70%,但在照射后的p53基因敲除的MLFs中,p21WAF1/Cip1水平或p21与Cdk2的相互作用并未增加。尽管p53基因敲除的MLFs在G1检查点未表现出延长的停滞,但辐射在照射后1 - 2小时内确实导致细胞周期蛋白E/Cdk2迅速降低20%并出现小幅超恢复。先前在中华仓鼠细胞中,细胞周期蛋白E/Cdk2的类似抑制和恢复与短暂的G1期延迟调控以及在明显的G1/S检查点起始的抑制有关。相比之下,ATM基因产物的缺失消除了细胞周期蛋白E/Cdk2的短暂抑制、大部分DNA合成抑制以及除10 - 15%抑制外的所有细胞周期蛋白A/Cdks抑制。结果表明,与G1/S检查点相关的细胞周期蛋白E/Cdk2的短暂抑制或S期“检查点”处的DNA合成抑制均不需要p53或p21。相反,ATM基因产物似乎对于G1/S检查点的调控以及与细胞周期蛋白A/Cdks抑制相关的DNA复制抑制至关重要。在S期检查点的背景下,介绍并讨论了不同细胞类型中DNA合成抑制的差异方面。

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