Talavera Karel, Yasumatsu Keiko, Yoshida Ryusuke, Margolskee Robert F, Voets Thomas, Ninomiya Yuzo, Nilius Bernd
Laboratory of Ion Channel Research, Dept. of Molecular Cell Biology, Herestraat 49, Campus Gasthuisberg, O&N1, KU Leuven, B-3000 Leuven, Belgium.
FASEB J. 2008 May;22(5):1343-55. doi: 10.1096/fj.07-9591com. Epub 2007 Dec 10.
Ordinary gustatory experiences, which are usually evoked by taste mixtures, are determined by multiple interactions between different taste stimuli. The most studied model for these gustatory interactions is the suppression of the responses to sweeteners by the prototype bitter compound quinine. Here we report that TRPM5, a cation channel involved in sweet taste transduction, is inhibited by quinine (EC(50)=50 microM at -50 mV) owing to a decrease in the maximal whole-cell TRPM5 conductance and an acceleration of channel closure. Notably, quinine inhibits the gustatory responses of sweet-sensitive gustatory nerves in wild-type (EC(50)= approximately 1.6 mM) but not in Trpm5 knockout mice. Quinine induces a dose- and time-dependent inhibition of TRPM5-dependent responses of single sweet-sensitive fibers to sucrose, according to the restricted diffusion of the drug into the taste tissue. Quinidine, the stereoisomer of quinine, has similar effects on TRPM5 currents and on sweet-induced gustatory responses. In contrast, the chemically unrelated bitter compound denatonium benzoate has an approximately 100-fold weaker effect on TRPM5 currents and, accordingly, at 10 mM it does not alter gustatory responses to sucrose. The inhibition of TRPM5 by bitter compounds constitutes the molecular basis of a novel mechanism of taste interactions, whereby the bitter tastant inhibits directly the sweet transduction pathway.
通常由味觉混合物引发的普通味觉体验,是由不同味觉刺激之间的多种相互作用所决定的。针对这些味觉相互作用研究最多的模型是原型苦味化合物奎宁对甜味剂反应的抑制作用。在此我们报告,TRPM5是一种参与甜味转导的阳离子通道,它会被奎宁抑制(在-50 mV时EC(50)=50 microM),这是由于全细胞TRPM5最大电导降低以及通道关闭加速所致。值得注意的是,奎宁抑制野生型中甜味敏感味觉神经的味觉反应(EC(50)=约1.6 mM),但在Trpm5基因敲除小鼠中则不会。根据药物在味觉组织中的有限扩散情况,奎宁对单个甜味敏感纤维对蔗糖的TRPM5依赖性反应呈现剂量和时间依赖性抑制。奎宁的立体异构体奎尼丁对TRPM5电流和甜味诱导的味觉反应具有类似作用。相比之下,化学结构不相关的苦味化合物苯甲地那铵对TRPM5电流的影响约弱100倍,因此在10 mM时它不会改变对蔗糖的味觉反应。苦味化合物对TRPM5的抑制作用构成了味觉相互作用新机制的分子基础,即苦味剂直接抑制甜味转导途径。