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DNA损伤反应中ATM与PARP-1之间的相互作用以及通过PARP抑制使ATM缺陷细胞致敏。

Interaction between ATM and PARP-1 in response to DNA damage and sensitization of ATM deficient cells through PARP inhibition.

作者信息

Aguilar-Quesada Rocío, Muñoz-Gámez José Antonio, Martín-Oliva David, Peralta Andreína, Valenzuela Maria Teresa, Matínez-Romero Rubén, Quiles-Pérez Rosa, Menissier-de Murcia Josiane, de Murcia Gilbert, Ruiz de Almodóvar Mariano, Oliver F Javier

机构信息

Instituto López Neyra de Parasitología y Biomedicina López Neyra, CSIC, Granada, Spain.

出版信息

BMC Mol Biol. 2007 Apr 25;8:29. doi: 10.1186/1471-2199-8-29.

Abstract

ATM and PARP-1 are two of the most important players in the cell's response to DNA damage. PARP-1 and ATM recognize and bound to both single and double strand DNA breaks in response to different triggers. Here we report that ATM and PARP-1 form a molecular complex in vivo in undamaged cells and this association increases after gamma-irradiation. ATM is also modified by PARP-1 during DNA damage. We have also evaluated the impact of PARP-1 absence or inhibition on ATM-kinase activity and have found that while PARP-1 deficient cells display a defective ATM-kinase activity and reduced gamma-H2AX foci formation in response to gamma-irradiation, PARP inhibition on itself is able to activate ATM-kinase. PARP inhibition induced gamma H2AX foci accumulation, in an ATM-dependent manner. Inhibition of PARP also induces DNA double strand breaks which were dependent on the presence of ATM. As consequence ATM deficient cells display an increased sensitivity to PARP inhibition. In summary our results show that while PARP-1 is needed in the response of ATM to gamma irradiation, the inhibition of PARP induces DNA double strand breaks (which are resolved in and ATM-dependent pathway) and activates ATM kinase.

摘要

ATM和PARP-1是细胞对DNA损伤反应中两个最重要的参与者。PARP-1和ATM可识别并结合单链和双链DNA断裂,以应对不同的触发因素。在此我们报告,在未受损细胞中,ATM和PARP-1在体内形成分子复合物,γ射线照射后这种关联会增强。在DNA损伤期间,PARP-1也会对ATM进行修饰。我们还评估了PARP-1缺失或抑制对ATM激酶活性的影响,发现虽然PARP-1缺陷细胞在γ射线照射下表现出有缺陷的ATM激酶活性和减少的γ-H2AX焦点形成,但PARP自身的抑制能够激活ATM激酶。PARP抑制以依赖ATM的方式诱导γ-H2AX焦点积累。PARP的抑制也会诱导DNA双链断裂,这依赖于ATM的存在。因此,ATM缺陷细胞对PARP抑制表现出更高的敏感性。总之,我们的结果表明,虽然PARP-1在ATM对γ射线照射的反应中是必需的,但PARP的抑制会诱导DNA双链断裂(通过依赖ATM的途径解决)并激活ATM激酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb56/1868035/e94636bd95f7/1471-2199-8-29-1.jpg

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