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首页> 外文期刊>Journal of Medicinal Chemistry >From Small Sweeteners to Sweet Proteins:Anatomy of the Binding Sites of the Human T1R2 T1R3 Receptor
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From Small Sweeteners to Sweet Proteins:Anatomy of the Binding Sites of the Human T1R2 T1R3 Receptor

机译:从小甜味剂到甜蛋白:人类T1R2 T1R3受体结合位点的解剖

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摘要

The sweet taste receptor,a heterodimeric G protein coupled receptor (GPCR) protein,formed by the T1R2 and T1R3 subunits,recognizes several sweet compounds including carbohydrates,amino acids,peptides,proteins,and synthetic sweeteners.Its similarity with the metabotropic glutamate mGluRl receptor allowed us to build homology models.All possible dimers formed by combinations of the human T1R2 and T1R3 subunits,modeled on the A (closed) or B (open) chains of the extracellular ligand binding domain of the mGluRl template,yield four ligand binding sites for low-molecular-weight sweeteners.These sites were probed by docking a set of molecules representative of all classes of sweet compounds and calculating the free energy of ligand binding.These sites are not easily accessible to sweet proteins,but docking experiments in silico showed that sweet proteins can bind to a secondary site without entering the deep cleft.Our models account for many experimental observations on the tastes of sweeteners,including sweetness synergy,and can help to design new sweeteners.
机译:甜味受体是由T1R2和T1R3亚基形成的异二聚体G蛋白偶联受体(GPCR)蛋白,可识别多种甜味化合物,包括碳水化合物,氨基酸,肽,蛋白质和合成甜味剂。它与代谢型谷氨酸mGluR1受体具有相似性。允许我们建立同源性模型。由人类T1R2和T1R3亚基组合形成的所有可能的二聚体,以mGluR1模板的细胞外配体结合域的A(闭合)或B(开放)链为模型,产生四个配体结合位点这些位点是通过对接代表所有类型甜味化合物的一组分子并计算配体结合的自由能来探测的,这些位点不易被甜蛋白接触,但是在计算机模拟中的对接实验表明甜蛋白可以结合到次级位点而不会进入深裂。我们的模型解释了许多关于甜味的实验观察包括甜味协同作用,并可以帮助设计新的甜味剂。

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