首页> 外文期刊>The Journal of biological chemistry >Heat Shock and Caloric Restriction Have a Synergistic Effect on the Heat Shock Response in a sir2.1-dependent Manner in Caenorhabditis elegans
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Heat Shock and Caloric Restriction Have a Synergistic Effect on the Heat Shock Response in a sir2.1-dependent Manner in Caenorhabditis elegans

机译:热休克和热量限制对Caenorhabditis elegans的Sir2.1依赖性方式具有协同作用。

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The heat shock response (HSR) is responsible for maintaining cellular and organismal health through the regulation of proteostasis. Recent data demonstrating that the mammalian HSR is regulated by SIRT1 suggest that this response may be under metabolic control. To test this hypothesis, we have determined the effect of caloric restriction in Caenorhabditis elegans on activation of the HSR and have found a synergistic effect on the induction of hsp70 gene expression. The homolog of mammalian SIRT1 in C. elegans is Sir2.1. Using a mutated C. elegans strain with a sir2.1 deletion, we show that heat shock and caloric restriction cooperate to promote increased survivability and fitness in a sir2.1-dependent manner. Finally, we show that caloric restriction increases the ability of heat shock to preserve movement in a polyglutamine toxicity neurodegenerative disease model and that this effect is dependent on sir2.1.
机译:热休克反应(HSR)负责通过蛋白质调节来维持细胞和有机体健康。最近的数据表明SIRT1调节哺乳动物HSR表明该响应可能在代谢控制下。为了测试这一假设,我们确定了在HSR的激活中的热藻炎中的热量限制效果,并发现了对HSP70基因表达的诱导的协同作用。乳房乳头1在C.秀丽隐杆线虫的同源物是sir2.1。使用SiR2.1缺失的突变杆状杆线虫菌株,我们表明热休克和热量限制配合以促进依赖于SIR2.1依赖的方式提高生存能力和健身。最后,我们表明热量限制增加了热休克在聚谷氨酰胺毒性神经变性疾病模型中保持运动的能力,并且这种效果取决于SIR2.1。

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