Zheng Xiangzhong, Yang Zhaohai, Yue Zhifeng, Alvarez John D, Sehgal Amita
Howard Hughes Medical Institute and Department of Neuroscience, University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.
Proc Natl Acad Sci U S A. 2007 Oct 2;104(40):15899-904. doi: 10.1073/pnas.0701599104. Epub 2007 Sep 25.
Circadian rhythms can be regulated by many environmental and endogenous factors. We show here a sensitivity of circadian clock function to oxidative stress that is revealed in flies lacking the foxo gene product. When exposed to oxidative stress, wild-type flies showed attenuated clock gene cycling in peripheral tissues, whereas foxo mutants also lost behavioral rhythms driven by the central clock. FOXO is expressed predominantly in the fat body, and transgenic expression in this tissue rescued the mutant behavioral phenotype, suggesting that foxo has non-cell-autonomous effects on central circadian clock function. Overexpression of signaling molecules that affect FOXO activity, such as the insulin receptor or Akt, in the fat body also increased susceptibility of the central clock to oxidative stress. Finally, foxo mutants showed a rapid decline in rest:activity rhythms with age, supporting the idea that the increase of oxidative stress contributes to age-associated degeneration of behavioral rhythms and indicating the importance of FOXO in mitigating this deterioration. Together these data demonstrate that metabolism affects central clock function and provide a link among insulin signaling, oxidative stress, aging, and circadian rhythms.
昼夜节律可受多种环境和内源性因素调节。我们在此展示了昼夜节律钟功能对氧化应激的敏感性,这在缺乏foxo基因产物的果蝇中得以体现。暴露于氧化应激时,野生型果蝇外周组织中的生物钟基因循环减弱,而foxo突变体也丧失了由中央生物钟驱动的行为节律。FOXO主要在脂肪体中表达,在该组织中的转基因表达挽救了突变体的行为表型,这表明foxo对中央昼夜节律钟功能具有非细胞自主性效应。在脂肪体中过表达影响FOXO活性的信号分子,如胰岛素受体或Akt,也会增加中央生物钟对氧化应激的敏感性。最后,foxo突变体的静息 - 活动节律随年龄增长而迅速下降,这支持了氧化应激增加导致与年龄相关的行为节律退化的观点,并表明FOXO在减轻这种退化方面的重要性。这些数据共同表明,代谢会影响中央生物钟功能,并在胰岛素信号传导、氧化应激、衰老和昼夜节律之间建立了联系。