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Requirement of ATR for maintenance of intestinal stem cells in aging Drosophila

机译:ATR对维持果蝇衰老的肠道干细胞的要求

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摘要

The stem cell genomic stability forms the basis for robust tissue homeostasis, particularly in high-turnover tissues. For the genomic stability, DNA damage response (DDR) is essential. This study was focused on the role of two major DDR-related factors, ataxia telangiectasia-mutated (ATM) and ATM- and RAD3-related (ATR) kinases, in the maintenance of intestinal stem cells (ISCs) in the adult Drosophila midgut. We explored the role of ATM and ATR, utilizing immunostaining with an anti-pS/TQ antibody as an indicator of ATM/ATR activation, γ-irradiation as a DNA damage inducer, and the UAS/GAL4 system for cell type-specific knockdown of ATM, ATR, or both during adulthood. The results showed that the pS/TQ signals got stronger with age and after oxidative stress. The pS/TQ signals were found to be more dependent on ATR rather than on ATM in ISCs/enteroblasts (EBs). Furthermore, an ISC/EB-specific knockdown of ATR, ATM, or both decreased the number of ISCs and oxidative stress-induced ISC proliferation. The phenotypic changes that were caused by the ATR knockdown were more pronounced than those caused by the ATM knockdown; however, our data indicate that ATR and ATM are both needed for ISC maintenance and proliferation; ATR seems to play a bigger role than does ATM.
机译:干细胞基因组的稳定性是强大的组织动态平衡的基础,特别是在高周转组织中。对于基因组稳定性,DNA损伤反应(DDR)是必不可少的。这项研究的重点是成年果蝇中肠肠道干细胞(ISC)维持中的两个主要的DDR相关因素,共济失调毛细血管扩张突变(ATM)以及ATM和RAD3相关(ATR)激酶。我们探索了ATM和ATR的作用,利用抗pS / TQ抗体的免疫染色作为ATM / ATR激活的指示剂,γ射线作为DNA损伤诱导剂,以及UAS / GAL4系统用于细胞类型特异性敲除成人期间使用ATM,ATR或同时使用两者。结果表明,pS / TQ信号随着年龄的增长和氧化应激后增强。在ISC /成胚细胞(EB)中,发现pS / TQ信号更依赖于ATR而不是ATM。此外,ASC,ATM或两者的ISC / EB特异性抑制可减少ISC的数量和氧化应激诱导的ISC增殖。由ATR组合引起的表型变化比由ATM组合引起的表型变化更明显。但是,我们的数据表明,ISC的维持和扩散都需要ATR和ATM。 ATR似乎比ATM发挥更大的作用。

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