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A Two-tiered compensatory response to loss of DNA repair modulates aging and stress response pathways

机译:对DNA修复丢失的两级补偿反应调节 衰老和应激反应途径

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摘要

Activation of oxidative stress-responses and downregulation of insulin-like signaling (ILS) is seen in Nucleotide Excision Repair (NER) deficient segmental progeroid mice. Evidence suggests that this is a survival response to persistent transcription-blocking DNA damage, although the relevant lesions have not been identified. Here we show that loss of NTH-1, the only Base Excision Repair (BER) enzyme known to initiate repair of oxidative DNA damage inC. elegans, restores normal lifespan of the short-lived NER deficient xpa-1 mutant. Loss of NTH-1 leads to oxidative stress and global expression profile changes that involve upregulation of genes responding to endogenous stress and downregulation of ILS. A similar, but more extensive, transcriptomic shift is observed in the xpa-1 mutant whereas loss of both NTH-1 and XPA-1 elicits a different profile with downregulation of Aurora-B and Polo-like kinase 1 signaling networks as well as DNA repair and DNA damage response genes. The restoration of normal lifespan and absence oxidative stress responses in nth-1;xpa-1 indicate that BER contributes to generate transcription blocking lesions from oxidative DNA damage. Hence, our data strongly suggests that the DNA lesions relevant for aging are repair intermediates resulting from aberrant or attempted processing by BER of lesions normally repaired by NER.
机译:氧化应激反应的激活和胰岛素样信号转导(ILS)的下调在核苷酸切除修复(NER)缺陷节段性早衰小鼠中可见。证据表明,这是对持久性转录阻滞性DNA损伤的生存反应,尽管尚未发现相关病变。在这里,我们显示NTH-1的丢失,这是已知的唯一一种在C中启动氧化DNA损伤修复的碱基切除修复(BER)酶。秀丽线虫,恢复短寿命的NER缺陷型xpa-1突变体的正常寿命。 NTH-1的缺失会导致氧化应激和整体表达谱变化,其中涉及对内源性应激作出响应的基因上调和ILS的下调。在xpa-1突变体中观察到了相似但更广泛的转录组变化,而NTH-1和XPA-1的缺失引起了Aurora-B和Polo样激酶1信号网络以及DNA下调的不同情况。修复和DNA损伤反应基因。正常寿命的恢复和nth-1; xpa-1中没有氧化应激反应表明BER有助于从氧化DNA损伤中产生转录阻断性病变。因此,我们的数据有力地表明,与衰老相关的DNA损伤是由NER正常修复的损伤的异常或BER尝试处理所导致的修复中间体。

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