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Inhibition of DNA damage repair by artificial activation of PARP with siDNA

机译:siDNA人工激活PARP抑制DNA损伤修复

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One of the major early steps of repair is the recruitment of repair proteins at the damage site, and this is coordinated by a cascade of modifications controlled by phosphatidylinositol 3-kinase-related kinases and/or poly (ADP-ribose) polymerase (PARP). We used short interfering DNA molecules mimicking double-strand breaks (called Dbait) or single-strand breaks (called Pbait) to promote DNA-dependent protein kinase (DNA-PK) and PARP activation. Dbait bound and induced both PARP and DNA-PK activities, whereas Pbait acts only on PARP. Therefore, comparative study of the two molecules allows analysis of the respective roles of the two signaling pathways: both recruit proteins involved in single-strand break repair (PARP, XRCC1 and PCNA) and prevent their recruitment at chromosomal damage. Dbait, but not Pbait, also inhibits recruitment of proteins involved in double-strand break repair (53BP1, NBS1, RAD51 and DNA-PK). By these ways, Pbait and Dbait disorganize DNA repair, thereby sensitizing cells to various treatments. Single-strand breaks repair inhibition depends on direct trapping of the main proteins on both molecules. Double-strand breaks repair inhibition may be indirect, resulting from the phosphorylation of double-strand breaks repair proteins and chromatin targets by activated DNA-PK. The DNA repair inhibition by both molecules is confirmed by their synthetic lethality with BRCA mutations.
机译:修复的主要早期步骤之一是在损伤部位募集修复蛋白,这与磷脂酰肌醇3激酶相关激酶和/或聚(ADP-核糖)聚合酶(PARP)控制的一系列修饰相协调。 。我们使用模仿双链断裂(称为Dbait)或单链断裂(称为Pbait)的短干扰DNA分子来促进DNA依赖性蛋白激酶(DNA-PK)和PARP激活。 Dbait结合并诱导PARP和DNA-PK活性,而Pbait仅作用于PARP。因此,对这两种分子的比较研究可以分析两种信号通路的各自作用:募集参与单链断裂修复的蛋白质(PARP,XRCC1和PCNA),并防止它们在染色体损伤时募集。 Dbait,但不是Pbait,也抑制涉及双链断裂修复的蛋白质的募集(53BP1,NBS1,RAD51和DNA-PK)。通过这些方式,Pbait和Dbait破坏了DNA修复,从而使细胞对各种治疗敏感。单链断裂修复抑制作用取决于两个分子上主要蛋白质的直接捕获。双链断裂修复抑制可能是间接的,这是由于双链断裂修复蛋白和染色质靶标被活化的DNA-PK磷酸化所致。这两种分子对DNA修复的抑制作用均通过具有BRCA突变的合成杀伤力得到证实。

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