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血清素受体5-HT2A调节寿命和蛋白质摄入。

The serotonin receptor 5-HT2A modulates lifespan and protein feeding in .

作者信息

Munneke Allyson S, Chakraborty Tuhin S, Porter Saige S, Gendron Christi M, Pletcher Scott D

机构信息

Program in Cellular and Molecular Biology, University of Michigan, Ann Arbor, MI, United States.

Department of Molecular and Integrative Physiology, University of Michigan, Ann Arbor, MI, United States.

出版信息

Front Aging. 2022 Dec 1;3:1068455. doi: 10.3389/fragi.2022.1068455. eCollection 2022.

Abstract

The conserved neurotransmitter serotonin has been shown to be an important modulator of lifespan in specific nutritional contexts; however, it remained unclear how serotonin signaling influences lifespan under normal conditions. Here, we show that serotonin signaling through the 5-HT2A receptor influences lifespan, behavior, and physiology in . Loss of the 5-HT2A receptor extends lifespan and induces a resistance to changes in dietary protein that are normally detrimental to lifespan. 5-HT2A null mutant flies also display decreased protein feeding and protein content in the body. Therefore, serotonin signaling through receptor 5-HT2A is likely recruited to promote motivation for protein intake, and chronic reduction of protein-drive through loss of 5-HT2A signaling leads to a lower protein set-point adaptation, which influences physiology, decreases feeding, and increases lifespan. Our findings reveal insights into the mechanisms by which organisms physiologically adapt in response to perceived inability to satisfy demand.

摘要

保守的神经递质血清素已被证明在特定营养环境下是寿命的重要调节因子;然而,血清素信号在正常条件下如何影响寿命仍不清楚。在这里,我们表明通过5-HT2A受体的血清素信号会影响寿命、行为和生理学。5-HT2A受体的缺失延长了寿命,并诱导了对通常对寿命有害的饮食蛋白质变化的抗性。5-HT2A基因缺失的突变果蝇在体内也表现出蛋白质摄取和蛋白质含量的降低。因此,通过5-HT2A受体的血清素信号可能被用来促进蛋白质摄入的动机,而通过5-HT2A信号缺失导致的蛋白质驱动的长期减少会导致较低的蛋白质设定点适应,这会影响生理学、减少进食并延长寿命。我们的研究结果揭示了生物体如何根据感知到的无法满足需求进行生理适应的机制。

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