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Ku counteracts mobilization of PARP1 and MRN in chromatin damaged with DNA double-strand breaks

机译:Ku抵消了被DNA双链断裂破坏的染色质中PARP1和MRN的动员

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摘要

In mammalian cells, the main pathway for DNA double-strand breaks (DSBs) repair is classical non-homologous end joining (C-NHEJ). An alternative or back-up NHEJ (B-NHEJ) pathway has emerged which operates preferentially under C-NHEJ defective conditions. Although B-NHEJ appears particularly relevant to genomic instability associated with cancer, its components and regulation are still largely unknown. To get insights into this pathway, we have knocked-down Ku, the main contributor to C-NHEJ. Thus, models of human cell lines have been engineered in which the expression of Ku70/80 heterodimer can be significantly lowered by the conditional induction of a shRNA against Ku70. On Ku reduction in cells, resulting NHEJ competent protein extracts showed a shift from C- to B-NHEJ that could be reversed by addition of purified Ku protein. Using a cellular fractionation protocol after treatment with a strong DSBs inducer followed by western blotting or immunostaining, we established that, among C-NHEJ factors, Ku is the main counteracting factor against mobilization of PARP1 and the MRN complex to damaged chromatin. In addition, Ku limits PAR synthesis and single-stranded DNA production in response to DSBs. These data support the involvement of PARP1 and the MRN proteins in the B-NHEJ route for the repair of DNA DSBs.
机译:在哺乳动物细胞中,DNA双链断裂(DSB)修复的主要途径是经典的非同源末端连接(C-NHEJ)。已经出现了替代的或备用的NHEJ(B-NHEJ)途径,该途径优先在C-NHEJ缺陷条件下运行。尽管B-NHEJ似乎与与癌症有关的基因组不稳定性特别相关,但其组成和调控仍然未知。为了深入了解这一途径,我们剔除了C-NHEJ的主要贡献者Ku。因此,已经设计了人细胞系模型,其中通过条件诱导抗Ku70的shRNA可以显着降低Ku70 / 80异二聚体的表达。关于细胞中Ku的减少,所得NHEJ感受态蛋白提取物显示出从C-转变为B-NHEJ,可以通过添加纯化的Ku蛋白来逆转。在使用强DSBs诱导剂处理后,采用细胞分级方案,然后进行Western印迹或免疫染色,我们确定,在C-NHEJ因子中,Ku是抵抗PARP1和MRN复合物动员到受损染色质的主要抵消因子。另外,Ku限制了响应DSB的PAR合成和单链DNA的产生。这些数据支持PARP1和MRN蛋白参与B-NHEJ途径的DNA DSB修复。

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