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与G蛋白和激动剂复合的完全激活的人类苦味受体TAS2R4的预测结构。

Predicted structure of fully activated human bitter taste receptor TAS2R4 complexed with G protein and agonists.

作者信息

Yang Moon Young, Mafi Amirhossein, Kim Soo-Kyung, Goddard William A, Guthrie Brian

机构信息

Materials and Process Simulation Center, California Institute of Technology, Pasadena, CA 91125, USA.

Cargill Global Food Research, Wayzata, MN 55391, USA.

出版信息

QRB Discov. 2021 Apr 8;2:e3. doi: 10.1017/qrd.2021.1. eCollection 2021.

Abstract

Bitter taste is sensed by bitter taste receptors (TAS2Rs) that belong to the G protein-coupled receptor (GPCR) superfamily. In addition to bitter taste perception, TAS2Rs have been reported recently to be expressed in many extraoral tissues and are now known to be involved in health and disease. Despite important roles of TAS2Rs in biological functions and diseases, no crystal structure is available to help understand the signal transduction mechanism or to help develop selective ligands as new therapeutic targets. We report here the three-dimensional structure of the fully activated TAS2R4 human bitter taste receptor predicted using the GEnSeMBLE complete sampling method. This TAS2R4 structure is coupled to the gustducin G protein and to each of several agonists. We find that the G protein couples to TAS2R4 by forming strong salt bridges to each of the three intracellular loops, orienting the activated Gα5 helix of the Gα subunit to interact extensively with the cytoplasmic region of the activated receptor. We find that the TAS2Rs exhibit unique motifs distinct from typical Class A GPCRs, leading to a distinct activation mechanism and a less stable inactive state. This fully activated bitter taste receptor complex structure provides insight into the signal transduction mechanism and into ligand binding to TAS2Rs.

摘要

苦味由属于G蛋白偶联受体(GPCR)超家族的苦味受体(TAS2Rs)感知。除了感知苦味外,最近有报道称TAS2Rs在许多口腔外组织中表达,并且现在已知其与健康和疾病有关。尽管TAS2Rs在生物学功能和疾病中具有重要作用,但尚无晶体结构可用于帮助理解信号转导机制或帮助开发作为新治疗靶点的选择性配体。我们在此报告使用GEnSeMBLE完全采样方法预测的完全激活的人苦味受体TAS2R4的三维结构。这种TAS2R4结构与味觉传导素G蛋白以及几种激动剂中的每一种偶联。我们发现,G蛋白通过与三个细胞内环中的每一个形成强盐桥与TAS2R4偶联,使Gα亚基的活化Gα5螺旋定向,以便与活化受体的胞质区域广泛相互作用。我们发现,TAS2Rs表现出与典型A类GPCR不同的独特基序,导致独特的激活机制和不太稳定的无活性状态。这种完全激活的苦味受体复合物结构为信号转导机制以及配体与TAS2Rs的结合提供了深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dda/10392674/1abdb1767682/S2633289221000016_fig1.jpg

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