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将ATR-ATRIP、Rad17和9-1-1复合物招募至DNA损伤处。

Recruitment of ATR-ATRIP, Rad17, and 9-1-1 complexes to DNA damage.

作者信息

Yang Xiaohong Helena, Zou Lee

机构信息

Massachusetts General Hospital Cancer Center, Harvard Medical School, Charlestown, USA.

出版信息

Methods Enzymol. 2006;409:118-31. doi: 10.1016/S0076-6879(05)09007-5.

Abstract

The ATR (ataxia-telangiectasia mutated and rad3-related)-ATRIP (ATR-interacting protein) kinase complex plays a central role in the checkpoint responses to a variety of types of DNA damage, especially those interfering with DNA replication. The checkpoint-signaling pathway activated by ATR-ATRIP regulates and coordinates cell-cycle progression, DNA replication, DNA repair, and many other cellular processes critical for genomic stability. Upon DNA damage or DNA replication interference, ATR-ATRIP and two of its key regulators, the Rad17 and the 9-1-1 complexes, are localized to sites of DNA damage and stalled replication forks. Recent biochemical and cell biological studies have revealed that RPA-coated single-stranded DNA, a common structure generated at sites of DNA damage and stalled replication forks, plays crucial roles in the recruitment of ATR-ATRIP, Rad17, and 9-1-1 complexes. The recruitment of ATR-ATRIP and its regulators to DNA damage is a key step for the recognition of DNA damage by the checkpoint, and is likely important for the regulation of ATR activity and/or function in response to DNA damage. The methods used to characterize the DNA association of ATR-ATRIP, Rad17, and 9-1-1 complexes have laid a foundation for further biochemical studies, which may ultimately lead us to understand the molecular mechanisms by which ATR-ATRIP monitors and protects genomic integrity.

摘要

共济失调毛细血管扩张症突变和rad3相关蛋白(ATR)-ATR相互作用蛋白(ATRIP)激酶复合物在对多种类型DNA损伤的检查点反应中起核心作用,尤其是那些干扰DNA复制的损伤。由ATR-ATRIP激活的检查点信号通路调节并协调细胞周期进程、DNA复制、DNA修复以及许多其他对基因组稳定性至关重要的细胞过程。在DNA损伤或DNA复制受到干扰时,ATR-ATRIP及其两个关键调节因子Rad17和9-1-1复合物会定位到DNA损伤位点和停滞的复制叉处。最近的生化和细胞生物学研究表明,RPA包被的单链DNA是在DNA损伤位点和停滞的复制叉处产生的一种常见结构,在招募ATR-ATRIP、Rad17和9-1-1复合物方面发挥着关键作用。将ATR-ATRIP及其调节因子招募到DNA损伤处是检查点识别DNA损伤的关键步骤,并且可能对响应DNA损伤时ATR活性和/或功能的调节很重要。用于表征ATR-ATRIP、Rad17和9-1-1复合物与DNA结合的方法为进一步的生化研究奠定了基础,这最终可能使我们了解ATR-ATRIP监测和保护基因组完整性的分子机制。

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