Department of Molecular Genetics, German Institute of Human Nutrition Potsdam-Rehbruecke, Arthur-Scheunert-Allee 114-116, 14558 Nuthetal, Germany.
Chem Senses. 2010 Feb;35(2):157-70. doi: 10.1093/chemse/bjp092. Epub 2009 Dec 18.
Humans perceive thousands of compounds as bitter. In sharp contrast, only approximately 25 taste 2 receptors (TAS2R) bitter taste receptors have been identified, raising the question as to how the vast array of bitter compounds can be detected by such a limited number of sensors. To address this issue, we have challenged 25 human taste 2 receptors (hTAS2Rs) with 104 natural or synthetic bitter chemicals in a heterologous expression system. Thirteen cognate bitter compounds for 5 orphan receptors and 64 new compounds for previously identified receptors were discovered. Whereas some receptors recognized only few agonists, others displayed moderate or extreme tuning broadness. Thus, 3 hTAS2Rs together were able to detect approximately 50% of the substances used. Conversely, though 63 bitter substances activated only 1-3 receptors, 19 compounds stimulated up to 15 hTAS2Rs. Our data suggest that the detection of the numerous bitter chemicals is related to the molecular receptive ranges of hTAS2Rs.
人类能感知上千种化合物的苦味。相比之下,仅有约 25 种味觉 2 型受体(TAS2R)被鉴定为苦味受体,这就产生了一个疑问,即如此有限数量的感受器是如何检测到如此众多的苦味化合物的。为了解决这个问题,我们在异源表达系统中用 104 种天然或合成的苦味化学物质对 25 个人类味觉 2 型受体(hTAS2R)进行了挑战。我们发现了 5 个孤儿受体的 13 种配对苦味化合物和 64 种先前鉴定受体的新化合物。虽然有些受体只识别少数激动剂,但其他受体的调谐宽度则处于中等或极端水平。因此,3 个 hTAS2R 一起能够检测到大约 50%的所用物质。相反,尽管有 63 种苦味物质仅激活 1-3 个受体,但有 19 种化合物能刺激多达 15 个 hTAS2R。我们的数据表明,众多苦味化合物的检测与 hTAS2R 的分子感受范围有关。