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A specific receptor site for glycerol, a new sweet tastant for Drosophila: Structure-taste relationship of glycerol in the labellar sugar receptor cell

机译:果蝇的一种新的甜味剂,甘油的特定受体位点:黄芪糖受体细胞中甘油的结构-味道关系

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摘要

Glycerol, a linear triol, is a sweet tastant for mammals but it has not previously been recognized to stimulate the sense of taste in insects. Here we show by electrophysiological experimentation that it effectively stimulates the labellar sugar receptor cell of Drosophila. We also show that in accord with the electrophysiological observations, the behavioral feeding response to glycerol is dose dependent. 3-Amino-1,2-propanediol inhibited the response of the sugar receptor cell to glycerol, specifically and competitively, while it had almost no effect on responses to sucrose, D-glucose, D-fructose and trehalose. In the null Drosophila mutant for the trehalose receptor (DeltaEP19), the response to glycerol showed no change, in sharp contrast with a characteristic drastic decrease in the response to trehalose. The glycerol concentration-response curves for I-type and L-type labellar hairs were statistically indistinguishable, while those for sucrose, D-glucose, D-fructose and trehalose were clearly different. These all indicate the presence of a specific receptor site for glycerol. The glycerol site was characterized by comparing the effectiveness of various derivatives of glycerol. Based on this structure-taste relationship of glycerol, a model is proposed for the glycerol site including three subsites and two steric barriers, which cannot accommodate carbon-ring containing sugars such as D-glucose.
机译:甘油,一种线性三醇,对哺乳动物是一种甜味剂,但以前尚未被认为能刺激昆虫的味觉。在这里,我们通过电生理实验表明,它可以有效刺激果蝇的黄糖受体细胞。我们还表明,根据电生理观察,对甘油的行为喂养反应是剂量依赖性的。 3-氨基1,2-丙二醇可特异性和竞争性地抑制糖受体细胞对甘油的反应,而对蔗糖,D-葡萄糖,D-果糖和海藻糖的反应几乎没有影响。在海藻糖受体的无效果蝇突变体(DeltaEP19)中,对甘油的响应没有变化,这与对海藻糖的响应特性急剧下降形成鲜明的对比。 I型和L型黄鼠毛的甘油浓度-响应曲线在统计学上是无法区分的,而蔗糖,D-葡萄糖,D-果糖和海藻糖的甘油浓度-响应曲线却明显不同。这些都表明存在甘油的特异性受体位点。通过比较甘油的各种衍生物的有效性来表征甘油位点。基于甘油的这种结构-味道关系,提出了一种甘油位点模型,该模型包括三个亚位点和两个空间位阻,不能容纳含碳环糖类(如D-葡萄糖)。

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