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Involvement of Daphnia pulicaria Sir2 in regulating stress response and lifespan

机译:水蚤Sir2参与调节应激反应和寿命。

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摘要

The ability to appropriately respond to proteotoxic stimuli is a major determinant of longevity and involves induction of various heat shock response (HSR) genes, which are essential to cope with cellular and organismal insults throughout lifespan. The activity of NAD+-dependent deacetylase Sir2, originally discovered in yeast, is known to be essential for effective HSR and longevity. Our previous work on HSR in Daphnia pulicaria indicated a drastic reduction of the HSR in older organisms. In this report we investigate the role of Sir2 in regulating HSR during the lifespan of D. pulicaria. We cloned Daphnia Sir2 open reading frame (ORF) to characterize the enzyme activity and confirmed that the overall function of Sir2 was conserved in Daphnia. The Sir2 mRNA levels increased while the enzyme activity declined with age and considering that Sir2 activity regulates HSR, this explains the previously observed age-dependent decline in HSR. Finally, we tested the effect of Sir2 knockdown throughout adult life by using our new RNA interference (RNAi) method by feeding. Sir2 knockdown severely reduced both the median lifespan as well as significantly increased mortality following heat shock. Our study provides the first characterization and functional study of Daphnia Sir2.
机译:适当响应蛋白毒性刺激的能力是寿命长短的主要决定因素,并且涉及多种热休克反应(HSR)基因的诱导,这对于应对整个生命周期中的细胞和机体损伤至关重要。最初发现于酵母中的NAD +依赖性脱乙酰基酶Sir2的活性已知对于有效的HSR和寿命至关重要。我们以前在水蚤中对高铁的研究表明,较旧生物体内的高铁已大大减少。在本报告中,我们调查了Sir2在杜鹃花一生中调控HSR的作用。我们克隆了水蚤的Sir2开放阅读框(ORF)以表征酶活性,并确认水蚤中Sir2的整体功能是保守的。 Sir2 mRNA水平增加,而酶活性随年龄下降,并考虑到Sir2活性调节HSR,这解释了以前观察到的HSR年龄依赖性下降。最后,我们使用新的喂食RNA干扰(RNAi)方法测试了Sir2基因敲低在整个成年后的效果。 Sir2组合件严重缩短了中位寿命,并显着增加了热休克后的死亡率。我们的研究提供了Daphnia Sir2的第一个表征和功能研究。

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