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激活的FOXO介导的胰岛素抵抗可通过降低TOR活性来阻断。

Activated FOXO-mediated insulin resistance is blocked by reduction of TOR activity.

作者信息

Luong Nancy, Davies Claire R, Wessells Robert J, Graham Suzanne M, King M Todd, Veech Richard, Bodmer Rolf, Oldham Sean M

机构信息

The Burnham Institute for Medical Research, Cancer Research Center, Neuroscience and Aging Center, 10901 North Torrey Pines Road, La Jolla, California 92037, USA.

出版信息

Cell Metab. 2006 Aug;4(2):133-42. doi: 10.1016/j.cmet.2006.05.013.

Abstract

Reducing insulin/IGF signaling allows for organismal survival during periods of inhospitable conditions by regulating the diapause state, whereby the organism stockpiles lipids, reduces fertility, increases stress resistance, and has an increased lifespan. The Target of Rapamycin (TOR) responds to changes in growth factors, amino acids, oxygen tension, and energy status; however, it is unclear how TOR contributes to physiological homeostasis and disease conditions. Here, we show that reducing the function of Drosophila TOR results in decreased lipid stores and glucose levels. Importantly, this reduction of dTOR activity blocks the insulin resistance and metabolic syndrome phenotypes associated with increased activity of the insulin responsive transcription factor, dFOXO. Reduction in dTOR function also protects against age-dependent decline in heart function and increases longevity. Thus, the regulation of dTOR activity may be an ancient "systems biological" means of regulating metabolism and senescence, that has important evolutionary, physiological, and clinical implications.

摘要

降低胰岛素/胰岛素样生长因子信号传导可通过调节滞育状态,使生物体在恶劣条件下存活,在此过程中生物体储存脂质、降低繁殖力、增强抗逆性并延长寿命。雷帕霉素靶蛋白(TOR)对生长因子、氨基酸、氧张力和能量状态的变化做出反应;然而,尚不清楚TOR如何促进生理稳态和疾病状态。在此,我们表明降低果蝇TOR的功能会导致脂质储存和葡萄糖水平降低。重要的是,dTOR活性的这种降低可阻断与胰岛素反应性转录因子dFOXO活性增加相关的胰岛素抵抗和代谢综合征表型。dTOR功能的降低还可防止心脏功能随年龄增长而衰退并延长寿命。因此,调节dTOR活性可能是一种古老的调节代谢和衰老的“系统生物学”方式,具有重要的进化、生理和临床意义。

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