Dipartimento di Biologia e Biotecnologie "C. Darwin", Sapienza Università di Roma, Rome, Italy.
Fondazione Cenci Bolognetti/ Istituto Pasteur Italia, Rome, Italy.
Commun Biol. 2022 Sep 3;5(1):905. doi: 10.1038/s42003-022-03885-w.
It is still continuously debated whether the low-dose/dose-rate (LDR) of ionizing radiation represents a hazard for humans. Model organisms, such as fruit flies, are considered valuable systems to reveal insights into this issue. We found that, in wild-type Drosophila melanogaster larval neuroblasts, the frequency of Chromosome Breaks (CBs), induced by acute γ-irradiation, is considerably reduced when flies are previously exposed to a protracted dose of 0.4 Gy delivered at a dose rate of 2.5 mGy/h. This indicates that this exposure, which is associated with an increased expression of DNA damage response proteins, induces a radioadaptive response (RAR) that protects Drosophila from extensive DNA damage. Interestingly, the same exposure reduces the frequency of telomere fusions (TFs) from Drosophila telomere capping mutants suggesting that the LDR can generally promote a protective response on chromatin sites that are recognized as DNA breaks. Deep RNA sequencing revealed that RAR is associated with a reduced expression of Loquacious D (Loqs-RD) gene that encodes a well-conserved dsRNA binding protein required for esiRNAs biogenesis. Remarkably, loss of Loqs mimics the LDR-mediated chromosome protection as it decreases the IR-induced CBs and TFs frequency. Thus, our molecular characterization of RAR identifies Loqs as a key factor in the cellular response to LDR and in the epigenetic routes involved in radioresistance.
低剂量/剂量率(LDR)电离辐射是否对人类构成危害仍在持续争论中。模式生物,如果蝇,被认为是揭示这一问题的有价值的系统。我们发现,在野生型黑腹果蝇幼虫神经母细胞中,急性γ辐射诱导的染色体断裂(CB)频率在先前暴露于以 2.5 mGy/h 的剂量率连续给予 0.4 Gy 的延长剂量时会显著降低。这表明这种暴露会增加 DNA 损伤反应蛋白的表达,从而诱导一种放射适应性反应(RAR),使果蝇免受广泛的 DNA 损伤。有趣的是,相同的暴露降低了来自果蝇端粒封闭突变体的端粒融合(TF)的频率,这表明 LDR 通常可以促进对被认为是 DNA 断裂的染色质位点的保护反应。深度 RNA 测序表明,RAR 与 Loquacious D(Loqs-RD)基因的表达降低有关,该基因编码一种保守的 dsRNA 结合蛋白,对于 esiRNAs 的生物发生是必需的。值得注意的是,Loqs 的缺失模拟了 LDR 介导的染色体保护,因为它降低了 IR 诱导的 CB 和 TF 频率。因此,我们对 RAR 的分子特征分析确定了 Loqs 是细胞对 LDR 反应以及涉及辐射抗性的表观遗传途径的关键因素。