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首页> 外文期刊>Journal of the American Chemical Society >Predicted Structure of Fully Activated Tas1R3/1R3' Homodimer Bound to G Protein and Natural Sugars: Structural Insights into G Protein Activation by a Class C Sweet Taste Homodimer with Natural Sugars
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Predicted Structure of Fully Activated Tas1R3/1R3' Homodimer Bound to G Protein and Natural Sugars: Structural Insights into G Protein Activation by a Class C Sweet Taste Homodimer with Natural Sugars

机译:预测完全活化的Tas1R3 / 1R3'同源二聚体与G蛋白和天然糖结合的结构:C C类甜味同源二聚体与天然糖的结构见解

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摘要

The Tas1R3 G protein-coupled receptor constitutes the main component of sweet taste sensory response in humans via forming a heterodimer with Tas1R2 or a homodimer with Tas1R3. The Tas1R3/1R3' homodimer serves as a low-affinity sweet taste receptor, stimulating gustducin G protein (G_(Gust)) signaling in the presence of a high concentration of natural sugars. This provides an additional means to detect the taste of natural sugars, thereby differentiating the flavors between natural sugars and artificial sweeteners. We report here the predicted 3D structure of active state Tas1R3/1R3' homodimer complexed with heterotrimeric G_(Gust) and sucrose. We discovered that the G_(Gust) makes ionic anchors to intracellular loops 1 and 2 of Tas1R3 while the Gα-α5 helix engages the cytoplasmic region extensively through salt bridge and hydrophobic interactions. We show that in the activation of this complex the Venus flytrap domains of the homodimer undergo a remarkable twist up to ~100° rotation around the vertical axis to adopt a closed-closed conformation while the intracellular region relaxes to an open-open conformation. We find that binding of sucrose to the homodimer stabilizes a preactivated conformation with a largely open intracellular region that recruits and activates the G_(Gust). Upon activation, the Gα subunit spontaneously opens up the nucleotide- binding site, making nucleotide exchange facile for signaling. This activation of G_(Gust) promotes the interdomain twist of the Venus flytrap domains. These structures and transformations could potentially be a basis for the design of new sweeteners with higher activity and less unpleasant flavors.
机译:TAS1R3G蛋白偶联受体构成具有与TAS1R2的异二聚体或具有TAS1R3的甜味剂的甜味感官反应的主要成分。 TAS1R3 / 1R3'同源二聚体用作低亲和力甜味受体,刺激甘蓝蛋白(G_(阵风))信号传导在高浓度的天然糖中。这提供了一种检测天然糖的味道的额外方法,从而将天然糖和人造甜味剂之间的味道区分开来。我们在此报告了有源状态TAS1R3 / 1R3'同源二聚体的预测的3D结构与异映射线G_(阵风)和蔗糖复合。我们发现G_(阵风)使离子锚在TAS1R3的细胞内环1和2中,而Gα-α5螺旋会通过盐桥和疏水相互作用引起细胞质区域。我们表明,在这种复合物的激活中,同源过二聚体的金星漂移结构域在垂直轴上经历显着的捻度,以采用闭合闭合构象,而细胞内区域松弛到开放式构象。我们发现蔗糖与同源过二聚物的结合稳定了与重新开放的细胞内区域的预活化构象稳定,该区域促进并激活G_(阵风)。在激活后,Gα亚基自发地打开核苷酸结合位点,使核苷酸交换设施用于信号传导。这种G_(阵风)的激活促进了金星旋过花板域的互补扭曲。这些结构和转化可能是设计具有更高活动和令人不令人不愉快的口味的新甜味剂的基础。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第40期|16824-16838|共15页
  • 作者单位

    Materials and Process Simulation Center (139-74) California Institute of Technology Pasadena California 91125 United States;

    Materials and Process Simulation Center (139-74) California Institute of Technology Pasadena California 91125 United States;

    Department of Chemistry University of British Columbia Vancouver BC V6T 1Z1 Canada;

    Cargill Global Food Research Wayzata Minnesota 55391 United States;

    Materials and Process Simulation Center (139-74) California Institute of Technology Pasadena California 91125 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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