Miyamoto Tetsuya, Amrein Hubert
Department of Molecular and Cellular Medicine; Texas A&M Health Science Center; College Station, TX USA.
Fly (Austin). 2014;8(1):19-25. doi: 10.4161/fly.27241. Epub 2013 Nov 22.
The detection of nutrients, both in food and within the body, is crucial for the regulation of feeding behavior, growth, and metabolism. While the molecular basis for sensing food chemicals by the taste system has been firmly linked to specific taste receptors, relatively little is known about the molecular nature of the sensors that monitor nutrients internally. Recent reports of taste receptors expressed in other organ systems, foremost in the gastrointestinal tract of mammals and insects, has led to the proposition that some taste receptors may also be used as sensors of internal nutrients. Indeed, we provided direct evidence that the Drosophila gustatory receptor 43a (Gr43a) plays a critical role in sensing internal fructose levels in the fly brain. In addition to the brain and the taste system, Gr43a is also expressed in neurons of the proventricular ganglion and the uterus. Here, we discuss the multiple potential roles of Gr43a in the fly. We also provide evidence that its activation in the brain is likely mediated by the neuropeptide Corazonin. Finally, we posit that Gr43a may represent only a precedent for other taste receptors that sense internal nutrients, not only in flies but, quite possibly, in other animals, including mammals.
对食物和体内营养物质的检测对于调节摄食行为、生长和新陈代谢至关重要。虽然味觉系统感知食物化学物质的分子基础已与特定味觉受体紧密相连,但对于监测体内营养物质的传感器的分子本质却知之甚少。最近有报道称,味觉受体在其他器官系统中表达,尤其是在哺乳动物和昆虫的胃肠道中,这引发了一种观点,即一些味觉受体也可能用作体内营养物质的传感器。事实上,我们提供了直接证据,表明果蝇味觉受体43a(Gr43a)在感知果蝇大脑中的内源性果糖水平方面发挥着关键作用。除了大脑和味觉系统外,Gr43a还在嗉囊神经节和子宫的神经元中表达。在此,我们讨论Gr43a在果蝇中的多种潜在作用。我们还提供证据表明,其在大脑中的激活可能由神经肽Corazonin介导。最后,我们认为Gr43a可能只是其他感知体内营养物质的味觉受体的一个先例,不仅在果蝇中如此,很可能在包括哺乳动物在内的其他动物中也是如此。