【2h】

Structural requirements of bitter taste receptor activation

机译:苦味受体激活的结构要求

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摘要

An important question in taste research is how 25 receptors of the human TAS2R family detect thousands of structurally diverse compounds. An answer to this question may arise from the observation that TAS2Rs in general are broadly tuned to interact with numerous substances. Ultimately, interaction with chemically diverse agonists requires architectures of binding pockets tailored to combine flexibility with selectivity. The present study determines the structure of hTAS2R binding pockets. We focused on a subfamily of closely related hTAS2Rs exhibiting pronounced amino acid sequence identities but unique agonist activation spectra. The generation of chimeric and mutant receptors followed by calcium imaging analyses identified receptor regions and amino acid residues critical for activation of hTAS2R46, -R43, and -R31. We found that the carboxyl-terminal regions of the investigated receptors are crucial for agonist selectivity. Intriguingly, exchanging two residues located in transmembrane domain seven between hTAS2R46, activated by strychnine, and hTAS2R31, activated by aristolochic acid, was sufficient to invert agonist selectivity. Further mutagenesis revealed additional positions involved in agonist interaction. The transfer of functionally relevant amino acids identified in hTAS2R46 to the corresponding positions of hTAS2R43 and -R31 resulted in pharmacological properties indistinguishable from the parental hTAS2R46. In silico modeling of hTAS2R46 allowed us to visualize the putative mode of interaction between agonists and hTAS2Rs. Detailed structure-function analyses of hTAS2Rs may ultimately pave the way for the development of specific antagonists urgently needed for more sophisticated analyses of human bitter taste perception.
机译:口味研究中的一个重要问题是人类TAS2R家族的25个受体如何检测数千种结构多样的化合物。这个问题的答案可能来自以下观察结果:通常将TAS2R广泛调整为与多种物质相互作用。最终,与化学上不同的激动剂的相互作用需要结合口袋的结构,该结合口袋经定制以结合灵活性和选择性。本研究确定了hTAS2R结合口袋的结构。我们专注于密切相关的hTAS2Rs的一个亚家族,它们表现出明显的氨基酸序列同一性,但具有独特的激动剂激活谱。嵌合受体和突变受体的产生,然后进行钙成像分析,确定了对hTAS2R46,-R43和-R31激活至关重要的受体区域和氨基酸残基。我们发现所研究的受体的羧基末端区域对于激动剂选择性至关重要。有趣的是,在被士的宁激活的hTAS2R46和被马兜铃酸激活的hTAS2R31之间交换位于跨膜结构域7的两个残基足以反转激动剂的选择性。进一步的诱变揭示了激动剂相互作用中涉及的其他位置。在hTAS2R46中鉴定的功能相关氨基酸转移到hTAS2R43和-R31的相应位置导致了与亲本hTAS2R46不可区分的药理特性。在计算机模拟中,hTAS2R46使我们可以看到激动剂与hTAS2Rs之间相互作用的推定模式。 hTAS2Rs的详细结构功能分析可能最终为开发特定的拮抗剂铺平了道路,这些拮抗剂是对人的苦味感知进行更复杂的分析所迫切需要的。

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