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LRIK interacts with the Ku70-Ku80 heterodimer enhancing the efficiency of NHEJ repair.

Dan WangZheng ZhouErzhong WuCan OuyangGuifeng WeiYunfei WangDandan HeYa CuiDongdong ZhangXiaomin ChenSimon H ReedJianjun LuoRunsheng Chen
Published in: Cell death and differentiation (2020)
Despite recent advances in our understanding of the function of long noncoding RNAs (lncRNAs), their roles and functions in DNA repair pathways remain poorly understood. By screening a panel of uncharacterized lncRNAs to identify those whose transcription is induced by double-strand breaks (DSBs), we identified a novel lncRNA referred to as LRIK that interacts with Ku, which enhances the ability of the Ku heterodimer to detect the presence of DSBs. Here, we show that depletion of LRIK generates significantly enhanced sensitivity to DSB-inducing agents and reduced DSB repair efficiency. In response to DSBs, LRIK enhances the recruitment of repair factors at DSB sites and facilitates γH2AX signaling. Our results demonstrate that LRIK is necessary for efficient repairing DSBs via nonhomologous end-joining pathway.
Keyphrases
  • dna repair
  • dna damage
  • dna damage response
  • transcription factor
  • long non coding rna
  • oxidative stress
  • genome wide identification