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Functional genomic approach to identify novel genes involved in the regulation of oxidative stress resistance and animal lifespan.

机译:功能基因组学方法,用于鉴定参与抗氧化应激和动物寿命调节的新基因。

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Genetic studies in many organisms suggest that an increased animal lifespan phenotype is often accompanied by enhanced resistance toward reactive oxygen species (ROS). In Caenorhabditis elegans, mutations in daf-2, which encode an insulin/insulin-like growth factor 1 receptor-like molecule, lead to an extended animal lifespan and increased resistance to ROS. We have optimized an assay to monitor ROS resistance in worms using the ROS-generating chemical paraquat. We have employed this assay to screen the RNAi library along chromosomes III and IV for genes that, when silenced, confer paraquat resistance. The positive RNAi clones were subsequently screened for a lifespan extension phenotype. Using this approach, we have identified 84 genes that, when inactivated by RNAi, lead to significant increases in animal lifespan. Among the 84 genes, 29 were found to act in a manner dependent on daf-16. DAF-16, a forkhead transcription factor, is known to integrate signals from multiple pathways, including the daf-2pathway, to regulate animal lifespan. Most of the 84 genes have not been previously linked to aging, and potentially participate in important cellular processes such as signal transduction, cell-cell interaction, gene expression, protein degradation, and energy metabolism. Our screen has also identified a group of genes that potentially function in a nutrient-sensing pathway to regulate lifespan in C. elegans. Our study provides a novel approach to identify genes involved in the regulation of aging.
机译:许多生物体的遗传研究表明,动物寿命表型的增加通常伴随着对活性氧(ROS)的抗性增强。在秀丽隐杆线虫中,编码胰岛素/胰岛素样生长因子1受体样分子的daf-2突变导致动物寿命延长和对ROS的抗性增加。我们已经优化了一种分析方法,以使用产生ROS的百草枯监测蠕虫中的ROS耐药性。我们已经采用这种测定方法来筛选沿染色体III和IV的RNAi文库中的基因,这些基因沉默后会产生百草枯抗性。随后筛选阳性RNAi克隆的寿命延长表型。使用这种方法,我们已经鉴定出84个基因,这些基因在被RNAi灭活后会导致动物寿命的显着增加。在这84个基因中,有29个以daf-16的方式发挥作用。已知DAF-16是一种叉头转录因子,可以整合来自多种途径(包括daf-2途径)的信号来调节动物的寿命。 84个基因中的大多数以前未与衰老相关,可能参与重要的细胞过程,例如信号转导,细胞间相互作用,基因表达,蛋白质降解和能量代谢。我们的筛查还确定了一组基因,这些基因可能在营养感应途径中发挥功能,以调节秀丽隐杆线虫的寿命。我们的研究提供了一种新颖的方法来鉴定参与衰老调节的基因。

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