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Sensory Attributes of Complex Tasting Divalent Salts Are Mediated by TRPM5 and TRPV1 Channels

机译:TRPM5和TRPV1通道介导复杂品尝二价盐的感官属性。

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摘要

Complex tasting divalent salts (CTDS) are present in our daily diet, contributing to multiple poorly understood taste sensations. CTDS evoking metallic, bitter, salty, and astringent sensations include the divalent salts of iron, zinc, copper, and magnesium. To identify pathways involved with the complex perception of the above salts, taste preference tests (two bottles, brief access) were performed in wild-type (WT) mice and in mice lacking (1) the T1R3 receptor, (2) TRPV1, the capsaicin receptor, or (3) the TRPM5 channel, the latter being necessary for the perception of sweet, bitter, and umami tasting stimuli. At low concentrations, FeSO4 and ZnSO4 were perceived as pleasant stimuli by WT mice, and this effect was fully reversed in TRPM5 knock-out mice. In contrast, MgSO4 and CuSO4 were aversive to WT mice, but for MgSO4 the aversion was abolished in TRPM5 knock-out animals, and for CuSO4, aversion decreased in both TRPV1- and TRPM5-deficient animals. Behavioral tests revealed that the T1R3 subunit of the sweet and umami receptors is implicated in the hedonically positive perception of FeSO4 and ZnSO4. For high concentrations of CTDS, the omission of TRPV1 reduced aversion. Imaging studies on heterologously expressed TRPM5 and TRPV1 channels are consistent with the behavioral experiments. Together, these results rationalize the complexity of metallic taste by showing that at low concentrations, compounds such as FeSO4 and ZnSO4 stimulate the gustatory system through the hedonically positive T1R3–TRPM5 pathway, and at higher concentrations, their aversion is mediated, in part, by the activation of TRPV1.
机译:我们的日常饮食中存在复杂的品尝二价盐(CTDS),导致多种难以理解的味觉。引起金属,苦味,咸味和涩味的CTDS包括铁,锌,铜和镁的二价盐。为了确定与上述盐的复杂感知有关的途径,在野生型(WT)小鼠和缺乏(1)T1R3受体,(2)TRPV1,辣椒素受体,或(3)TRPM5通道,后者对于感知甜味,苦味和鲜味刺激是必不可少的。在低浓度下,野生型小鼠将FeSO4和ZnSO4视为令人愉悦的刺激物,而在TRPM5基因敲除小鼠中这种作用被完全逆转。相反,MgSO4和CuSO4对野生型小鼠具有厌恶性,但是对于MgSO4,TRPM5基因敲除动物的厌恶被消除,而对于CuSO4,TRPV1和TRPM5缺陷动物的厌恶降低。行为测试表明,甜味和鲜味受体的T1R3亚基与FeSO4和ZnSO4的享乐主义积极感知有关。对于高浓度的CTDS,省略TRPV1可减少厌恶感。异源表达的TRPM5和TRPV1通道的成像研究与行为实验一致。总之,这些结果合理地证明了金属味的复杂性,表明低浓度时,FeSO4和ZnSO4等化合物通过享乐性正的T1R3-TRPM5途径刺激味觉系统,而在较高浓度时,其厌恶情绪部分地由以下途径介导: TRPV1的激活。

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