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果蝇中代谢稳态与营养感知的建模:对衰老和代谢疾病的启示

Modeling metabolic homeostasis and nutrient sensing in Drosophila: implications for aging and metabolic diseases.

作者信息

Owusu-Ansah Edward, Perrimon Norbert

机构信息

Department of Genetics, Harvard Medical School, 77 Avenue Louis Pasteur, Boston, MA 02115, USA.

出版信息

Dis Model Mech. 2014 Mar;7(3):343-50. doi: 10.1242/dmm.012989.

Abstract

Over the past decade, numerous reports have underscored the similarities between the metabolism of Drosophila and vertebrates, with the identification of evolutionarily conserved enzymes and analogous organs that regulate carbohydrate and lipid metabolism. It is now well established that the major metabolic, energy-sensing and endocrine signaling networks of vertebrate systems are also conserved in flies. Accordingly, studies in Drosophila are beginning to unravel how perturbed energy balance impinges on lifespan and on the ensuing diseases when energy homeostasis goes awry. Here, we highlight several emerging concepts that are at the nexus between obesity, nutrient sensing, metabolic homeostasis and aging. Specifically, we summarize the endocrine mechanisms that regulate carbohydrate and lipid metabolism, and provide an overview of the neuropeptides that regulate feeding behavior. We further describe the various efforts at modeling the effects of high-fat or -sugar diets in Drosophila and the signaling mechanisms involved in integrating organ function. Finally, we draw attention to some of the cardinal discoveries made with these disease models and how these could spur new research questions in vertebrate systems.

摘要

在过去十年中,众多报告强调了果蝇与脊椎动物新陈代谢之间的相似性,鉴定出了在进化上保守的调节碳水化合物和脂质代谢的酶及类似器官。如今已充分证实,脊椎动物系统中的主要代谢、能量感应和内分泌信号网络在果蝇中也保守存在。因此,对果蝇的研究开始揭示当能量稳态失衡时,紊乱的能量平衡如何影响寿命以及随之而来的疾病。在此,我们重点介绍肥胖、营养感应、代谢稳态和衰老之间相互关联的几个新兴概念。具体而言,我们总结了调节碳水化合物和脂质代谢的内分泌机制,并概述了调节摄食行为的神经肽。我们还进一步描述了在果蝇中模拟高脂肪或高糖饮食影响的各种研究工作以及涉及整合器官功能的信号机制。最后,我们提请注意利用这些疾病模型所取得的一些重要发现,以及这些发现如何激发脊椎动物系统中的新研究问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96af/3944494/7637e2128705/DMM012989F1.jpg

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