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SIFamide 将饥饿信号转化为果蝇的食欲和进食行为。

SIFamide Translates Hunger Signals into Appetitive and Feeding Behavior in Drosophila.

机构信息

Molecular Neurobiology of Behavior, Johann-Friedrich-Blumenbach-Institute for Zoology and Anthropology, University of Goettingen, Julia-Lermontowa-Weg 3, 37077 Goettingen, Germany.

Neurobiology and Genetics, Theodor-Boveri-Institute, Biocenter, University of Würzburg, Am Hubland, 97074 Würzburg, Germany.

出版信息

Cell Rep. 2017 Jul 11;20(2):464-478. doi: 10.1016/j.celrep.2017.06.043.

Abstract

Animal behavior is, on the one hand, controlled by neuronal circuits that integrate external sensory stimuli and induce appropriate motor responses. On the other hand, stimulus-evoked or internally generated behavior can be influenced by motivational conditions, e.g., the metabolic state. Motivational states are determined by physiological parameters whose homeostatic imbalances are signaled to and processed within the brain, often mediated by modulatory peptides. Here, we investigate the regulation of appetitive and feeding behavior in the fruit fly, Drosophila melanogaster. We report that four neurons in the fly brain that release SIFamide are integral elements of a complex neuropeptide network that regulates feeding. We show that SIFamidergic cells integrate feeding stimulating (orexigenic) and feeding suppressant (anorexigenic) signals to appropriately sensitize sensory circuits, promote appetitive behavior, and enhance food intake. Our study advances the cellular dissection of evolutionarily conserved signaling pathways that convert peripheral metabolic signals into feeding-related behavior.

摘要

动物行为一方面受整合外部感觉刺激并诱导适当运动反应的神经元回路控制。另一方面,刺激引起或内部产生的行为可以受到动机状态的影响,例如代谢状态。动机状态由生理参数决定,其体内平衡失衡会在大脑中发出信号并进行处理,通常由调节肽介导。在这里,我们研究了果蝇中食欲和摄食行为的调节。我们报告说,在苍蝇大脑中释放 SIFamide 的四个神经元是调节摄食的复杂神经肽网络的基本组成部分。我们表明,SIFamidergic 细胞整合了刺激摄食(食欲增强)和抑制摄食(厌食)的信号,以适当调节感觉回路,促进食欲行为,并增强食物摄入。我们的研究推进了细胞解析进化保守的信号通路,这些信号通路将外周代谢信号转化为与摄食相关的行为。

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