首页> 美国卫生研究院文献>Aging (Albany NY) >Klotho interferes with a novel FGF-signalling pathway and insulin/Igf-like signalling to improve longevity and stress resistance in Caenorhabditis elegans
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Klotho interferes with a novel FGF-signalling pathway and insulin/Igf-like signalling to improve longevity and stress resistance in Caenorhabditis elegans

机译:Klotho干扰了一种新的FGF信号通路和胰岛素/ Igf样信号从而改善了秀丽隐杆线虫的寿命和抗逆性

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摘要

Klotho exerts anti-aging properties in mammals in two different ways. While membrane-bound Klotho, which is primarily expressed in the kidney, acts as an obligate co-receptor of FGF23 to regulate phosphate homeostasis, secreted Klotho, resulting from the shedding of the KL1-KL2 ectodomain into the bloodstream, inhibits Insulin/IGF1 signalling. However, the underlying molecular mechanisms are not fully understood. Here, we investigated the biological role of Klotho inCaenorhabditis elegans.Two redundant homologues of the klotho gene exist in C. elegans and encode predicted proteins homologous to the β glucosidase-like KL1 domain of mammalian Klotho. We have used a genetic approach to investigate the functional activity of Klotho in C. elegans. Here, we report that whereas Klotho requires EGL-15 (FGFR) and EGL-17 to promote longevity and oxidative stress resistance, it is not involved in the regulation of fluid homeostasis, controlled by LET-756. Besides revealing a new post-developmental role for EGL-17, our data suggest that the KL1 form of Klotho is involved in FGF23-independent FGF signalling. We also report a genetic interaction between Klotho and the DAF-2 (Ins/IGF1R)/DAF-16 (FOXO) pathway. While the regulation of longevity requires functional DAF-2/DAF-16 signalling, the control of oxidative stress resistance involves a DAF-2- independent, DAF-16-dependent pathway, suggesting that Klotho may target either DAF-2 or DAF-16, depending of environmental conditions. Thus, the predictive KL1 form of Klotho appears to crosstalk with both FGF and Insulin/IGF1/FOXO pathways to exert anti-aging properties in C. elegans.
机译:Klotho以两种不同的方式在哺乳动物中发挥抗衰老作用。虽然膜结合的Klotho主要在肾脏中表达,但它作为FGF23的专职共受体来调节磷酸盐稳态,但由于KL1-KL2胞外域脱落进入血流而分泌的Klotho抑制了胰岛素/ IGF1信号传导。但是,潜在的分子机制尚未完全了解。在这里,我们调查了Klotho在秀丽隐杆线虫中的生物学作用。秀丽隐杆线虫中存在klotho基因的两个冗余同源物,它们编码与哺乳动物Klotho的β葡糖苷酶样KL1结构域同源的预测蛋白。我们已经使用一种遗传方法来调查线虫在线虫中的功能活性。在这里,我们报告说,尽管Klotho需要EGL-15(FGFR)和EGL-17来提高寿命和抗氧化应激能力,但它不参与LET-756控制的流体稳态的调节。除了揭示EGL-17在开发中的新作用外,我们的数据还表明Klotho的KL1形式参与了不依赖FGF23的FGF信号传导。我们还报告了Klotho和DAF-2(Ins / IGF1R)/ DAF-16(FOXO)途径之间的遗传相互作用。虽然长寿的调节需要功能性DAF-2 / DAF-16信号传导,但抗氧化应激的控制涉及DAF-2独立,DAF-16依赖性途径,这表明Klotho可能靶向DAF-2或DAF-16 ,取决于环境条件。因此,Klotho的预测KL1形式似乎与FGF和胰岛素/ IGF1 / FOXO通路发生串扰,从而在秀丽隐杆线虫中发挥抗衰老特性。

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