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An ammo-acid taste receptor

机译:氨基酸味觉受体

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The sense of taste provides animals with valuable information about the nature and quality of food. Mammals can recognize and respond to a diverse repertoire of chemical entities, including sugars, salts, acids and a wide range of toxic substances. Several amino acids taste sweet or delicious (umami) to humans, and are attractive to rodents and other animals. This is noteworthy because L-amino acids function as the building blocks of proteins, as biosynthetic precursors of many biologically relevant small molecules, and as metabolic fuel. Thus, having a taste pathway dedicated to their detection probably had significant evolutionary implications. Here we identify and characterize a mammalian amino-acid taste receptor. This receptor, T1R1+3, is a heteromer of the taste-specific T1R1 and T1R3 G-protein-coupled receptors. We demonstrate that T1R1 and T1R3 combine to function as a broadly tuned L-amino-acid sensor responding to most of the 20 standard amino acids, but not to their D-enan-tiomers or other compounds. We also show that sequence differences in T1R receptors within and between species (human and mouse) can significantly influence the selectivity and specificity of taste responses.
机译:味觉为动物提供了有关食物性质和质量的宝贵信息。哺乳动物可以识别和响应各种化学实体,包括糖,盐,酸和多种有毒物质。几种氨基酸对人来说是甜的或美味的(鲜味),并且对啮齿动物和其他动物具有吸引力。这是值得注意的,因为L-氨基酸是蛋白质的组成部分,是许多生物学上相关的小分子的生物合成前体,并且是代谢燃料。因此,拥有专用于其检测的味觉途径可能具有重大的进化意义。在这里,我们确定并表征哺乳动物的氨基酸味觉受体。该受体T1R1 + 3是味觉特异性T1R1和T1R3 G蛋白偶联受体的异源体。我们证明T1R1和T1R3结合起来起广泛调谐的L-氨基酸传感器的作用,对20种标准氨基酸中的大多数做出了响应,但对它们的D-烯-对映体或其他化合物却没有响应。我们还显示,物种(人类和小鼠)之间和之间的T1R受体的序列差异可以显着影响味觉反应的选择性和特异性。

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