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Drosophila FIT is a protein-specific satiety hormone essential for feeding control

机译:果蝇FIT是一种特定于蛋白质的饱腹感激素对控制饮食至关重要

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摘要

Protein homeostasis is critical for health and lifespan of animals. However, the mechanisms for controlling protein feeding remain poorly understood. Here we report that in Drosophila, protein intake-induced feeding inhibition (PIFI) is specific to protein-containing food, and this effect is mediated by a fat body (FB) peptide named female-specific independent of transformer (FIT). Upon consumption of protein food, FIT expression is greatly elevated. Secreted FIT peptide in the fly haemolymph conveys this metabolic message to the brain, thereby promoting the release of Drosophila insulin-like peptide 2 (DILP2) and suppressing further protein intake. Interestingly, Fit is a sexually dimorphic gene, and consequently protein consumption-induced insulin release, as well as protein feeding behaviour, are also dimorphic between sexes. Thus, our findings reveal a protein-specific satiety hormone, providing important insights into the complex regulation of feeding decision, as well as the sexual dimorphism in feeding behaviour.
机译:蛋白质稳态对动物的健康和寿命至关重要。但是,控制蛋白质进食的机制仍然知之甚少。在这里,我们报道在果蝇中,蛋白质摄入诱导的进食抑制(PIFI)对含蛋白质的食物具有特异性,而这种作用是由一种脂肪体(FB)肽介导的,该肽被称为女性特异性的独立于变体(FIT)。食用蛋白质食品后,FIT表达大大提高。蝇血淋巴中分泌的FIT肽将这种代谢信息传达给大脑,从而促进果蝇胰岛素样肽2(DILP2)的释放并抑制蛋白质的进一步摄入。有趣的是,Fit是有性的双态基因,因此蛋白质消耗引起的胰岛素释放以及蛋白质的摄食行为在两性之间也是双态的。因此,我们的发现揭示了一种蛋白质特异的饱腹激素,可为复杂的喂养决策调控以及喂养行为的性二态化提供重要见解。

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