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BGL3 lncRNA mediates retention of the BRCA1/BARD1 complex at DNA damage sites

机译:BRCA1 / BARD1 BGL3 lncRNA介导保留复杂的DNA损伤处

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Abstract Long non‐coding RNAs (lncRNAs) are emerging regulators of genomic stability and human disease. However, the molecular mechanisms by which nuclear lncRNAs directly contribute to DNA damage responses remain largely unknown. Using RNA antisense purification coupled with quantitative mass spectrometry (RAP‐qMS), we found that the lncRNA BGL3 binds to PARP1 and BARD1, exhibiting unexpected roles in homologous recombination. Mechanistically, BGL3 is recruited to DNA double‐strand breaks (DSBs) by PARP1 at an early time point, which requires its interaction with the DNA‐binding domain of PARP1. BGL3 also binds the C‐terminal BRCT domain and an internal region (amino acids 127–424) of BARD1, which mediates interaction of the BRCA1/BARD1 complex with its binding partners such as HP1γ and RAD51, resulting in BRCA1/BARD1 retention at DSBs. Cells depleted for BGL3 displayed genomic instability and were sensitive to DNA‐damaging reagents. Overall, our findings underscore the biochemical versatility of RNA as a mediator molecule in the DNA damage response pathway, which affects the accumulation of BRCA1/BARD1 at DSBs.
机译:摘要长非编码rna (lncRNAs)新兴基因组稳定性和监管机构人类疾病。核lncRNAs直接贡献DNA损伤反应在很大程度上仍未知。使用反义RNA净化加上定量质谱(说唱qMS应承担的),我们发现lncRNA BGL3 PARP1和结合在同源BARD1,表现出意想不到的作用重组。DNA双链断裂(双边带)应承担PARP1在一个早期的时间点,这就需要其交互PARP1 DNA检测绑定域名。结合C检测终端BRCT域和一个内部地区(BARD1氨基酸127 - 424),介导BRCA1 / BARD1复杂的相互作用与绑定合作伙伴如HP1γ和RAD51,导致BRCA1在双边带/ BARD1保留。耗尽BGL3显示基因组不稳定性敏感DNA损害应承担的试剂。总的来说,我们的研究结果强调了生化作为一个调停者多功能性的RNA分子DNA损伤反应途径,影响积累BRCA1 / BARD1双边带。

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