The N-Myc-responsive lncRNA MILIP promotes DNA double-strand break repair through non-homologous end joining

Ku70型 神经母细胞瘤 Ku80型 基因敲除 DNA修复 DNA修复蛋白XRCC4 癌症研究 DNA损伤 生物 分子生物学 非同源性末端接合 细胞生物学 DNA 细胞凋亡 DNA错配修复 基因 细胞培养 遗传学 DNA结合蛋白 转录因子
作者
Pei Lin Wang,Liu Teng,Yu Feng,Yi Meng Yue,Man Man Han,Qianqian Yan,Kaihong Ye,Caixia Tang,Sheng Nan Zhang,Teng Qi,Xiao Hong Zhao,Ting La,Yuqing Zhang,Jinming Li,Bin Hu,Dengfei Xu,Shundong Cang,Li Wang,Lei Jin,Rick F. Thorne,Yuwei Zhang,Tao Liu,Xudong Zhang
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [Proceedings of the National Academy of Sciences]
卷期号:119 (49) 被引量:1
标识
DOI:10.1073/pnas.2208904119
摘要

The protooncoprotein N-Myc, which is overexpressed in approximately 25% of neuroblastomas as the consequence of MYCN gene amplification, has long been postulated to regulate DNA double-strand break (DSB) repair in neuroblastoma cells, but experimental evidence of this function is presently scant. Here, we show that N-Myc transcriptionally activates the long noncoding RNA MILIP to promote nonhomologous end-joining (NHEJ) DNA repair through facilitating Ku70–Ku80 heterodimerization in neuroblastoma cells. High MILIP expression was associated with poor outcome and appeared as an independent prognostic factor in neuroblastoma patients. Knockdown of MILIP reduced neuroblastoma cell viability through the induction of apoptosis and inhibition of proliferation, retarded neuroblastoma xenograft growth, and sensitized neuroblastoma cells to DNA-damaging therapeutics. The effect of MILIP knockdown was associated with the accumulation of DNA DSBs in neuroblastoma cells largely due to decreased activity of the NHEJ DNA repair pathway. Mechanistical investigations revealed that binding of MILIP to Ku70 and Ku80 increased their heterodimerization, and this was required for MILIP-mediated promotion of NHEJ DNA repair. Disrupting the interaction between MILIP and Ku70 or Ku80 increased DNA DSBs and reduced cell viability with therapeutic potential revealed where targeting MILIP using Gapmers cooperated with the DNA-damaging drug cisplatin to inhibit neuroblastoma growth in vivo. Collectively, our findings identify MILIP as an N-Myc downstream effector critical for activation of the NHEJ DNA repair pathway in neuroblastoma cells, with practical implications of MILIP targeting, alone and in combination with DNA-damaging therapeutics, for neuroblastoma treatment.
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