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p53 依赖的细胞周期调控:对基因毒性应激的反应

p53-dependent cell cycle control: response to genotoxic stress.

作者信息

Schwartz D, Rotter V

机构信息

Department of Molecular Cell Biology, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Semin Cancer Biol. 1998;8(5):325-36. doi: 10.1006/scbi.1998.0095.

Abstract

p53 protein is involved in key responses to genotoxic stress. These functions underlie the role of p53 as the 'guardian of the genome'. In a simplified manner, upon low or repairable levels of DNA damage, p53 mediates the delay or arrest at checkpoints preceding cell replication (the G1/S checkpoint), and is involved in delaying damaged cells prior premitotic chromosome condensation (the G2 and pre-meiotic check-points) and actual chromosome partition (the spindle check-point). During these delays, an opportunity is given to repair the DNA damage, before its fixation and propagation, that may lead to carcinogenesis. Upon high or irreparable DNA damage, p53 promotes the cells towards apoptosis. Here we review the known molecular pathways by which p53 controls the cell cycle, with a specific focus on the significance of p53-mediated checkpoint response for its 'tumor suppressor' function. The data reviewed is concerned with the in vivo mouse models including p53 knockout mice, transgenic mice harboring various mutant forms of p53 and mice knocked out for cell-cycle- and apoptosis-associated genes situated upstream or downstream from p53, that have been elaborated upon over the last few years.

摘要

p53蛋白参与对基因毒性应激的关键反应。这些功能构成了p53作为“基因组守护者”的基础。简而言之,在DNA损伤程度较低或可修复时,p53介导细胞复制前检查点(G1/S检查点)的延迟或停滞,并参与在有丝分裂前染色体浓缩(G2和减数分裂前检查点)以及实际染色体分离(纺锤体检查点)之前延迟受损细胞。在这些延迟期间,会有机会在DNA损伤固定和传播之前对其进行修复,否则可能导致癌变。在DNA损伤程度较高或无法修复时,p53会促使细胞凋亡。在此,我们综述p53控制细胞周期的已知分子途径,特别关注p53介导的检查点反应对其“肿瘤抑制”功能的重要性。所综述的数据涉及体内小鼠模型,包括p53基因敲除小鼠、携带各种p53突变形式的转基因小鼠,以及敲除位于p53上下游的细胞周期和凋亡相关基因的小鼠,这些模型在过去几年中已得到深入研究。

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