共济失调毛细血管扩张
Gadd45型
生物
DNA损伤
细胞周期检查点
细胞周期
综合征如奈梅亨破损综合症
DNA修复
G2-M DNA损伤检查点
突变体
基因
野生型
细胞生物学
癌症研究
突变
分子生物学
DNA
遗传学
作者
Michael B. Kastan,Qimin Zhan,Wafik S. El‐Deiry,France Carrier,Tyler Jacks,William V. Walsh,Beverly Plunkett,B Vogelstein,Albert J. Fornace
出处
期刊:Cell
[Cell Press]
日期:1992-11-01
卷期号:71 (4): 587-597
被引量:3084
标识
DOI:10.1016/0092-8674(92)90593-2
摘要
Cell cycle checkpoints can enhance cell survival and limit mutagenic events following DNA damage. Primary murine fibroblasts became deficient in a G1 checkpoint activated by ionizing radiation (IR) when both wild-type p53 alleles were disrupted. In addition, cells from patients with the radiosensitive, cancer-prone disease ataxia-telangiectasia (AT) lacked the IR-induced increase in p53 protein levels seen in normal cells. Finally, IR induction of the human GADD45 gene, an induction that is also defective in AT cells, was dependent on wild-type p53 function. Wild-type but not mutant p53 bound strongly to a conserved element in the GADD45 gene, and a p53-containing nuclear factor, which bound this element, was detected in extracts from irradiated cells. Thus, we identified three participants (AT gene(s), p53, and GADD45) in a signal transduction pathway that controls cell cycle arrest following DNA damage; abnormalities in this pathway probably contribute to tumor development.
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