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Regulation of Longevity in Caenorhabditis elegans by Heat Shock Factor and Molecular Chaperones

机译:热休克因子和分子伴侣对秀丽隐杆线虫寿命的调节

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摘要

The correlation between longevity and stress resistance observed in long-lived mutant animals suggests that the ability to sense and respond to environmental challenges could be important for the regulation of life span. We therefore examined the role of heat shock factor (HSF-1), a master transcriptional regulator of stress-inducible gene expression and protein folding homeostasis, in the regulation of longevity. Down-regulation of hsf-1 by RNA interference suppressed longevity of mutants in an insulin-like signaling (ILS) pathway that functions in the nervous system of Caenorhabditis elegans to influence aging. hsf-1 was also required for temperature-induced dauer larvae formation in an ILS mutant. Using tissue-specific expression of wild-type or dominant negative HSF-1, we demonstrated that HSF-1 acts in multiple tissues to regulate longevity. Down-regulation of individual molecular chaperones, transcriptional targets of HSF-1, also decreased longevity of long-lived mutant but not wild-type animals. However, suppression by individual chaperones was to a lesser extent, suggesting an important role for networks of chaperones. The interaction of ILS with HSF-1 could represent an important molecular strategy to couple the regulation of longevity with an ancient genetic switch that governs the ability of cells to sense and respond to stress.
机译:在长寿命突变动物中观察到的寿命与抗逆性之间的相关性表明,感知和应对环境挑战的能力对于调节寿命很重要。因此,我们研究了热休克因子(HSF-1)(应激诱导型基因表达和蛋白质折叠稳态的主要转录调节因子)在长寿调节中的作用。 RNA干扰对hsf-1的下调抑制了胰岛素样信号传导(ILS)途径中突变体的寿命,该途径在秀丽隐杆线虫的神经系统中起作用以影响衰老。在ILS突变体中,温度诱导的道尔幼虫形成也需要hsf-1。使用野生型或显性负性HSF-1的组织特异性表达,我们证明了HSF-1在多种组织中起作用以调节寿命。 HSF-1的转录目标,个别分子伴侣的下调也降低了长寿命突变体的寿命,但没有降低野生型动物的寿命。然而,单个伴侣蛋白的抑制作用程度较小,这暗示了伴侣蛋白网络的重要作用。 ILS与HSF-1的相互作用可能代表了一种重要的分子策略,它将长寿的调节与古老的遗传开关相结合,后者控制着细胞感知和响应压力的能力。

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