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Life-span extension by dietary restriction is mediated by NLP-7 signaling and coelomocyte endocytosis in C. elegans

机译:饮食限制下的寿命延长是由线虫中的NLP-7信号传导和粒细胞内吞作用介导的

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摘要

Recent studies have shown that the rate of aging can be modulated by diverse interventions. Dietary restriction is the most widely used intervention to promote longevity; however, the mechanisms underlying the effect of dietary restriction remain elusive. In a previous study, we identified two novel genes, nlp-7 and cup-4, required for normal longevity in Caenorhabditis elegans. nlp-7 is one of a set of neuropeptide-like protein genes; cup-4 encodes an ion-channel involved in endocytosis by coelomocytes. Here, we assess whether nlp-7 and cup-4 mediate longevity increases by dietary restriction. RNAi of nlp-7 or cup-4 significantly reduces the life span of the eat-2 mutant, a genetic model of dietary restriction, but has no effect on the life span of long-lived mutants resulting from reduced insulin/IGF-1 signaling or dysfunction of the mitochondrial electron transport chain. The life-span extension observed in wild-type N2 worms by dietary restriction using bacterial dilution is prevented significantly in nlp-7 and cup-4 mutants. RNAi knockdown of genes encoding candidate receptors of NLP-7 and genes involved in endocytosis by coelomocytes also specifically shorten the life span of the eat-2 mutant. We conclude that two novel pathways, NLP-7 signaling and endocytosis by coelomocytes, are required for life extension under dietary restriction in C. elegans.—Park, S.-K., Link, C. D., Johnson, T. E. Life-span extension by dietary restriction is mediated by NLP-7 signaling and coelomocyte endocytosis in C. elegans.
机译:最近的研究表明,可以通过多种干预措施来调节衰老的速度。饮食限制是延长寿命的最广泛使用的干预措施。然而,饮食限制作用的潜在机制仍然难以捉摸。在先前的研究中,我们鉴定了秀丽隐杆线虫正常长寿所需的两个新基因,nlp-7和cup-4。 nlp-7是一组神经肽样蛋白基因中的一个。 cup-4编码一个离子通道,该通道参与了粒细胞的内吞作用。在这里,我们评估nlp-7和cup-4是否通过饮食限制来介导寿命的延长。 nlp-7或cup-4的RNAi显着降低饮食限制的遗传模型eat-2突变体的寿命,但对胰岛素/ IGF-1信号减少导致的长寿命突变体的寿命没有影响或线粒体电子传输链功能异常。通过使用细菌稀释的饮食限制,在野生型N2蠕虫中观察到的寿命延长在nlp-7和cup-4突变体中得到了显着阻止。编码NLP-7候选受体的基因的RNAi敲除以及由粒细胞参与胞吞作用的基因也特别缩短了eat-2突变体的寿命。我们得出的结论是,在线虫的饮食限制下,延长寿命需要两种新途径,即NLP-7信号传导和由粒细胞的内吞作用。—Park,S.-K.,Link,CD,Johnson,TE秀丽隐杆线虫的NLP-7信号传导和粒细胞内吞作用介导了饮食限制。

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