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TORC1 在脂肪组织中的调节对于果蝇整体适应缺氧至关重要。

TORC1 modulation in adipose tissue is required for organismal adaptation to hypoxia in Drosophila.

机构信息

Clark H Smith Brain Tumour Centre, Arnie Charbonneau Cancer Institute, Alberta Children's Hospital Research Institute, and Department of Biochemistry and Molecular Biology Calgary, University of Calgary, Calgary, T2N4N1, Alberta, Canada.

出版信息

Nat Commun. 2019 Apr 23;10(1):1878. doi: 10.1038/s41467-019-09643-7.

Abstract

Animals often develop in environments where conditions such as food, oxygen and temperature fluctuate. The ability to adapt their metabolism to these fluctuations is important for normal development and viability. In most animals, low oxygen (hypoxia) is deleterious. However some animals can alter their physiology to tolerate hypoxia. Here we show that TORC1 modulation in adipose tissue is required for organismal adaptation to hypoxia in Drosophila. We find that hypoxia rapidly suppresses TORC1 signaling in Drosophila larvae via TSC-mediated inhibition of Rheb. We show that this hypoxia-mediated inhibition of TORC1 specifically in the larval fat body is essential for viability. Moreover, we find that these effects of TORC1 inhibition on hypoxia tolerance are mediated through remodeling of fat body lipid storage. These studies identify the larval adipose tissue as a key hypoxia-sensing tissue that coordinates whole-body development and survival to changes in environmental oxygen by modulating TORC1 and lipid metabolism.

摘要

动物在食物、氧气和温度等条件波动的环境中发育。适应这些波动的代谢能力对正常发育和生存能力很重要。在大多数动物中,低氧(缺氧)是有害的。然而,有些动物可以改变其生理机能来耐受缺氧。在这里,我们表明,TORC1 在脂肪组织中的调节对于果蝇对缺氧的整体适应是必需的。我们发现,缺氧通过 TSC 介导的 Rheb 抑制,迅速抑制果蝇幼虫中的 TORC1 信号。我们表明,幼虫脂肪体中 TORC1 的这种缺氧介导的抑制对于生存力是必不可少的。此外,我们发现 TORC1 抑制对缺氧耐受性的这些影响是通过脂肪体脂质储存的重塑来介导的。这些研究确定了幼虫脂肪组织作为一个关键的缺氧感应组织,通过调节 TORC1 和脂质代谢,协调全身发育和对环境氧气变化的生存。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f34/6478872/f1c7bf62e05a/41467_2019_9643_Fig1_HTML.jpg

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