Riera Céline E, Vogel Horst, Simon Sidney A, Damak Sami, le Coutre Johannes
Nestlé Research Center, Vers-chez-les-Blanc, Perception Physiology, PO Box 44, CH-1000 Lausanne 26, Switzerland.
Biochem Biophys Res Commun. 2008 Nov 28;376(4):653-7. doi: 10.1016/j.bbrc.2008.09.029. Epub 2008 Sep 18.
Artificial sweeteners such as saccharin, aspartame, acesulfame-K, and cyclamate produce at high concentrations an unpleasant after-taste that is generally attributed to bitter and metallic taste sensations. To identify receptors involved with the complex perception of the above compounds, preference tests were performed in wild-type mice and mice lacking the TRPV1 channel or the T1R3 receptor, the latter being necessary for the perception of sweet taste. The sweeteners, including cyclamate, displayed a biphasic response profile, with the T1R3 mediated component implicated in preference. At high concentrations imparting off-taste, omission of TRPV1 reduced aversion. In a heterologous expression system the Y511A point mutation in the vanilloid pocket of TRPV1 did not affect saccharin and aspartame responses but abolished cyclamate and acesulfame-K activities. The results rationalize artificial sweetener tastes and off-tastes by showing that at low concentrations, these molecules stimulate the gustatory system through the hedonically positive T1R3 pathway, and at higher concentrations, their aversion is partly mediated by TRPV1.
糖精、阿斯巴甜、安赛蜜和甜蜜素等人工甜味剂在高浓度时会产生一种令人不悦的余味,这种余味通常归因于苦味和金属味。为了确定与上述化合物复杂感知相关的受体,在野生型小鼠以及缺乏TRPV1通道或T1R3受体的小鼠中进行了偏好测试,后者对于甜味感知是必需的。包括甜蜜素在内的甜味剂呈现出双相反应曲线,其中T1R3介导的成分与偏好有关。在产生异味的高浓度下,去除TRPV1可降低厌恶感。在异源表达系统中,TRPV1香草酸口袋中的Y511A点突变不影响糖精和阿斯巴甜的反应,但消除了甜蜜素和安赛蜜的活性。这些结果通过表明在低浓度下,这些分子通过享乐主义上积极的T1R3途径刺激味觉系统,而在高浓度下,它们的厌恶感部分由TRPV1介导,从而解释了人工甜味剂的味道和异味。