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共济失调毛细血管扩张症及相关综合征中DNA损伤诱导的信号传导

DNA damage-induced signalling in ataxia-telangiectasia and related syndromes.

作者信息

Lavin Martin F, Kozlov Sergei

机构信息

Queensland Institute of Medical Research, Brisbane, Australia; School of Medicine, The University of Queensland, Brisbane, Australia.

出版信息

Radiother Oncol. 2007 Jun;83(3):231-7. doi: 10.1016/j.radonc.2007.04.032. Epub 2007 May 23.

Abstract

ATM, the protein mutated in the human genetic disorder ataxia-telangiectasia, functions by responding to radiation damage to DNA, primarily DNA double strand breaks (dsb), to reduce the risk of genome instability, cancer and neurodegeneration. ATM is rapidly activated as an existing protein to phosphorylate a number of downstream proteins that are involved in DNA repair and cell cycle checkpoint activation. While the exact mechanism of activation of ATM has not been determined, it is now evident that it relies heavily on the Mre11 complex (Mre11/Rad50/Nbs1) and a series of post-translational events for this activation. The Mre11 complex acts as a sensor for the break, recruits ATM to this site where it is autophosphorylated and then is capable of phosphorylating substrates that participate in DNA repair and cell cycle control. A greater understanding of how ATM is activated and functions through different signalling pathways is paramount to devising therapeutic strategies for the treatment of A-T patients. This knowledge can also be used to advantage in sensitizing cells to radiation and ultimately deriving novel therapeutic approaches for the treatment of cancer.

摘要

共济失调毛细血管扩张症是一种人类遗传疾病,其中发生突变的蛋白质ATM通过对DNA的辐射损伤(主要是DNA双链断裂,即dsb)做出反应来发挥作用,以降低基因组不稳定、癌症和神经退行性变的风险。ATM作为一种现有蛋白质被迅速激活,从而磷酸化许多参与DNA修复和细胞周期检查点激活的下游蛋白质。虽然ATM激活的确切机制尚未确定,但现在很明显,它在很大程度上依赖于Mre11复合物(Mre11/Rad50/Nbs1)以及一系列翻译后事件来实现这种激活。Mre11复合物作为断裂的传感器,将ATM招募到该位点,在那里ATM进行自身磷酸化,然后能够磷酸化参与DNA修复和细胞周期控制的底物。深入了解ATM如何通过不同信号通路被激活并发挥作用,对于设计治疗共济失调毛细血管扩张症患者的治疗策略至关重要。这些知识还可用于使细胞对辐射敏感,并最终衍生出治疗癌症的新方法。

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