Gami Minaxi S, Wolkow Catherine A
Laboratory of Neurosciences, Gerontology Research Center, National Institute on Aging, National Institutes of Health, Baltimore, MD 21224, USA.
Aging Cell. 2006 Feb;5(1):31-7. doi: 10.1111/j.1474-9726.2006.00188.x.
Much excitement has arisen from the observation that decrements in insulin-like signaling can dramatically extend lifespan in the nematode, Caenorhabditis elegans, and fruitfly, Drosophila melanogaster. In addition, there are tantalizing hints that the IGF-I pathway in mice may have similar effects. In addition to dramatic effects on lifespan, invertebrate insulin-like signaling also promotes changes in stress resistance, metabolism and development. Which, if any, of the various phenotypes of insulin pathway mutants are relevant to longevity? What are the genes that function in collaboration with insulin to prolong lifespan? These questions are at the heart of current research in C. elegans longevity. Two main theories exist as to the mechanism behind insulin's effects on invertebrate longevity. One theory is that insulin programs metabolic parameters that prolong or reduce lifespan. The other theory is that insulin determines the cell's ability to endure oxidative stress from respiration, thereby determining the rate of aging. However, these mechanisms are not mutually exclusive and several studies seem to support a role for both. Here, we review recently published reports investigating the mechanisms behind insulin's dramatic effect on longevity. We also spotlight several C. elegans genes that are now known to interact with insulin signaling to determine lifespan. These insights into pathways affecting invertebrate lifespan may provide a basis for developing strategies for pharmacological manipulation of human lifespan.
胰岛素样信号传导的减少能够显著延长线虫(秀丽隐杆线虫)和果蝇(黑腹果蝇)的寿命,这一观察结果引发了诸多关注。此外,还有诱人的线索表明,小鼠中的胰岛素样生长因子-I(IGF-I)通路可能具有类似的作用。除了对寿命产生显著影响外,无脊椎动物的胰岛素样信号传导还会促进抗逆性、新陈代谢和发育的变化。胰岛素通路突变体的各种表型中,哪些(如果有的话)与长寿相关?哪些基因与胰岛素协同作用以延长寿命?这些问题是当前秀丽隐杆线虫长寿研究的核心。关于胰岛素对无脊椎动物寿命影响背后的机制,存在两种主要理论。一种理论认为,胰岛素设定了延长或缩短寿命的代谢参数。另一种理论认为,胰岛素决定了细胞耐受呼吸作用产生的氧化应激的能力,从而决定了衰老速度。然而,这些机制并非相互排斥,一些研究似乎支持两者都起作用。在此,我们回顾最近发表的有关胰岛素对寿命产生显著影响背后机制的研究报告。我们还重点介绍了几种现已知道与胰岛素信号传导相互作用以决定寿命的秀丽隐杆线虫基因。这些对影响无脊椎动物寿命途径的见解可能为开发调控人类寿命的药理学策略提供基础。