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The Role of Monoaminergic Neurotransmission for Metabolic Control in the Fruit Fly Drosophila Melanogaster

机译:单胺能神经传递在果蝇果蝇体内代谢控制中的作用。

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摘要

Hormones control various metabolic traits comprising fat deposition or starvation resistance. Here we show that two invertebrate neurohormones, octopamine (OA) and tyramine (TA) as well as their associated receptors, had a major impact on these metabolic traits. Animals devoid of the monoamine OA develop a severe obesity phenotype. Using flies defective in the expression of receptors for OA and TA, we aimed to decipher the contributions of single receptors for these metabolic phenotypes. Whereas those animals impaired in octß1r, octß2r and tar1 share the obesity phenotype of OA-deficient (tβh-deficient) animals, the octß1r, octß2r deficient flies showed reduced insulin release, which is opposed to the situation found in tβh-deficient animals. On the other hand, OAMB deficient flies were leaner than controls, implying that the regulation of this phenotype is more complex than anticipated. Other phenotypes seen in tβh-deficient animals, such as the reduced ability to perform complex movements tasks can mainly be attributed to the octß2r. Tissue-specific RNAi experiments revealed a very complex interorgan communication leading to the different metabolic phenotypes observed in OA or OA and TA-deficient flies.
机译:激素控制包括脂肪沉积或抗饥饿性在内的各种代谢特征。在这里,我们显示了两种无脊椎动物神经激素,章鱼胺(OA)和酪胺(TA)以及它们相关的受体,对这些代谢特征产生了重大影响。缺乏单胺OA的动物会出现严重的肥胖表型。我们使用在OA和TA受体表达方面有缺陷的果蝇,旨在破译这些代谢表型的单个受体的作用。那些在octß1r,octß2r和tar1中受损的动物具有OA缺乏(tβh缺乏)动物的肥胖表型,而octß1r,octß2r缺乏果蝇的胰岛素释放减少,这与tβh缺乏动物的情况相反。另一方面,OAMB缺陷果蝇比对照更瘦弱,这表明该表型的调控比预期的要复杂。在缺乏tβh的动物中观察到的其他表型,例如执行复杂运动任务的能力降低,可能主要归因于octß2r。组织特异性RNAi实验揭示了非常复杂的器官间通讯,导致在OA或OA和TA缺陷果蝇中观察到不同的代谢表型。

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