Long noncoding RNA BS-DRL1 modulates the DNA damage response and genome stability by interacting with HMGB1 in neurons

长链非编码 RNA BS-DRL1 通过与神经元中的 HMGB1 相互作用来调节 DNA 损伤反应和基因组稳定性

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作者:Min-Min Lou #, Xiao-Qiang Tang #, Guang-Ming Wang #, Jia He, Fang Luo, Ming-Feng Guan, Fei Wang, Huan Zou, Jun-Ying Wang, Qun Zhang, Ming-Jian Xu, Qi-Li Shi, Li-Bing Shen, Guo-Ming Ma, Yi Wu, Yao-Yang Zhang, Ai-Bin Liang, Ting-Hua Wang, Liu-Lin Xiong, Jian Wang, Jun Xu, Wen-Yuan Wang

Abstract

Long noncoding RNAs (lncRNAs) are known to regulate DNA damage response (DDR) and genome stability in proliferative cells. However, it remains unknown whether lncRNAs are involved in these vital biological processes in post-mitotic neurons. Here, we report and characterize a lncRNA, termed Brain Specific DNA-damage Related lncRNA1 (BS-DRL1), in the central nervous system. BS-DRL1 is a brain-specific lncRNA and depletion of BS-DRL1 in neurons leads to impaired DDR upon etoposide treatment in vitro. Mechanistically, BS-DRL1 interacts with HMGB1, a chromatin protein that is important for genome stability, and is essential for the assembly of HMGB1 on chromatin. BS-DRL1 mediated DDR exhibits cell-type specificity in the cortex and cerebellum in gamma-irradiated mice and BS-DRL1 knockout mice show impaired motor function and concomitant purkinje cell degeneration. Our study extends the understanding of lncRNAs in DDR and genome stability and implies a protective role of lncRNA against neurodegeneration.

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