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RFamide神经肽信号通路对秀丽隐杆线虫觅食与代谢的协同调控

Coordinated regulation of foraging and metabolism in C. elegans by RFamide neuropeptide signaling.

作者信息

Cohen Merav, Reale Vincenzina, Olofsson Birgitta, Knights Andrew, Evans Peter, de Bono Mario

机构信息

MRC Laboratory of Molecular Biology, Hills Road, Cambridge CB2 0QH, UK.

出版信息

Cell Metab. 2009 Apr;9(4):375-85. doi: 10.1016/j.cmet.2009.02.003.

Abstract

Animals modify food-seeking behavior and metabolism according to perceived food availability. Here we show that, in the roundworm C. elegans, release of neuropeptides from interneurons that are directly postsynaptic to olfactory, gustatory, and thermosensory neurons coordinately regulates behavior and metabolism. Animals lacking these neuropeptides, encoded by the flp-18 gene, are defective in chemosensation and foraging, accumulate excess fat, and exhibit reduced oxygen consumption. Two G protein-coupled receptors of the NPY/RFamide family, NPR-4 and NPR-5, are activated by FLP-18 peptides in vitro and exhibit mutant phenotypes that recapitulate those of flp-18 mutants. Our data suggest that sensory input can coordinately regulate behavior and metabolism via NPY/RFamide-like receptors. They suggest that peptidergic feedback from interneurons regulates sensory neuron activity, and that at least some of this communication occurs extrasynaptically. Extrasynaptic neuropeptide signaling may greatly increase the computational capacity of neural circuits.

摘要

动物会根据感知到的食物可获得性来改变觅食行为和新陈代谢。我们在此表明,在秀丽隐杆线虫中,来自与嗅觉、味觉和温度感觉神经元直接形成突触后的中间神经元释放的神经肽可协调调节行为和新陈代谢。缺乏由flp - 18基因编码的这些神经肽的动物在化学感受和觅食方面存在缺陷,会积累过多脂肪,并表现出氧气消耗减少的情况。NPY/RFamide家族的两个G蛋白偶联受体NPR - 4和NPR - 5在体外被FLP - 18肽激活,并表现出与flp - 18突变体相似的突变表型。我们的数据表明,感觉输入可通过NPY/RFamide样受体协调调节行为和新陈代谢。这表明中间神经元的肽能反馈调节感觉神经元的活动,并且至少部分这种通讯发生在突触外。突触外神经肽信号传导可能会极大地增加神经回路的计算能力。

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