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The HIF-1 Hypoxia-Inducible Factor Modulates Lifespan in C. elegans

机译:HIF-1缺氧诱导因子调节线虫的寿命

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摘要

During normal development or during disease, animal cells experience hypoxic (low oxygen) conditions, and the hypoxia-inducible factor (HIF) transcription factors implement most of the critical changes in gene expression that enable animals to adapt to this stress. Here, we examine the roles of HIF-1 in post-mitotic aging. We examined the effects of HIF-1 over-expression and of hif-1 loss-of-function mutations on longevity in C. elegans, a powerful genetic system in which adult somatic cells are post-mitotic. We constructed transgenic lines that expressed varying levels of HIF-1 protein and discovered a positive correlation between HIF-1 expression levels and lifespan. The data further showed that HIF-1 acted in parallel to the SKN-1/NRF and DAF-16/FOXO transcription factors to promote longevity. HIF-1 over-expression also conferred increased resistance to heat and oxidative stress. We isolated and characterized additional hif-1 mutations, and we found that each of 3 loss-of-function mutations conferred increased longevity in normal lab culture conditions, but, unlike HIF-1 over-expression, a hif-1 deletion mutation did not extend the lifespan of daf-16 or skn-1 mutants. We conclude that HIF-1 over-expression and hif-1 loss-of-function mutations promote longevity by different pathways. These data establish HIF-1 as one of the key stress-responsive transcription factors that modulate longevity in C. elegans and advance our understanding of the regulatory networks that link oxygen homeostasis and aging.
机译:在正常发育或疾病期间,动物细胞会经历低氧(低氧)条件,而缺氧诱导因子(HIF)转录因子会实现基因表达的大多数关键变化,从而使动物能够适应这种压力。在这里,我们检查了HIF-1在有丝分裂后衰老中的作用。我们检查了HIF-1过表达和hif-1功能丧失突变对秀丽隐杆线虫寿命的影响,秀丽隐杆线虫是一种强大的遗传系统,其中成年体细胞是有丝分裂的。我们构建了表达不同水平的HIF-1蛋白的转基因品系,并发现HIF-1表达水平与寿命之间呈正相关。数据进一步表明,HIF-1与SKN-1 / NRF和DAF-16 / FOXO转录因子平行发挥作用,以延长寿命。 HIF-1的过表达还赋予了其更高的耐热性和氧化应激性。我们分离并表征了另外的hif-1突变,我们发现3个功能丧失突变中的每一个都赋予正常实验室培养条件下更长的寿命,但是与HIF-1过表达不同,hif-1缺失突变没有延长daf-16或skn-1突变体的寿命。我们得出的结论是,HIF-1的过表达和hif-1的功能丧失突变通过不同的途径促进了寿命的延长。这些数据将HIF-1确立为调节秀丽隐杆线虫寿命的关键应激反应转录因子之一,并增进了我们对将氧稳态和衰老联系起来的调节网络的理解。

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