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利用分子代谢动力学模拟预测各种甜味剂激活甜味受体 GPCR 异源二聚体的协同效应。

Synergic Effects in the Activation of the Sweet Receptor GPCR Heterodimer for Various Sweeteners Predicted Using Molecular Metadynamics Simulations.

机构信息

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

Cargill Global Core Research, Wayzata, Minnesota 55391, United States.

出版信息

J Agric Food Chem. 2021 Oct 20;69(41):12250-12261. doi: 10.1021/acs.jafc.1c03779. Epub 2021 Oct 6.

Abstract

The sweet taste is elicited by activation of the TAS1R2/1R3 heterodimer G protein-coupled receptor. This is a therapeutic target for treatment of obesity and metabolic dysfunctions. Sweetener blends provide attractive strategies to lower the sugar level while preserving the attractive taste of food. To understand the synergic effect of various sweetener blend combinations of artificial and natural sweeteners, we carried out our molecular dynamics studies using predicted structures of the TAS1R2/1R3 heterodimer and predicted structures for the sweeteners. We used as a measure of activation the intracellular ionic lock distance between transmembrane helices 3 and 6 of TAS1R3. We find that full synergic combinations [rebaudioside A (Reb-A)/acesulfame K and Reb-A/sucralose] and partial synergic combinations (sucralose/acesulfame K) show significantly more negative changes in the free energy compared to single-ligand cases, while a pair known to be suppressive (saccharin and acesulfame K) shows significantly less changes than for the single-ligand case. This study provides an atomistic understanding of the mechanism for synergy and identifies new combinations of sweeteners to reduce the caloric content for treating diseases.

摘要

甜味是通过激活 TAS1R2/1R3 异二聚体 G 蛋白偶联受体而产生的。这是治疗肥胖和代谢功能障碍的治疗靶点。甜味剂混合物提供了有吸引力的策略来降低糖的含量,同时保持食物的诱人味道。为了了解人工和天然甜味剂的各种甜味剂混合物组合的协同作用,我们使用 TAS1R2/1R3 异二聚体的预测结构和甜味剂的预测结构进行了我们的分子动力学研究。我们使用 TAS1R3 跨膜螺旋 3 和 6 之间的细胞内离子锁定距离作为激活的度量。我们发现,全协同组合[莱鲍迪甙 A (Reb-A)/乙酰磺胺酸钾和 Reb-A/三氯蔗糖]和部分协同组合(三氯蔗糖/乙酰磺胺酸钾)与单配体情况相比,自由能的变化明显更负,而一对已知具有抑制作用的组合(糖精和乙酰磺胺酸钾)与单配体情况相比,变化明显更小。这项研究提供了对协同作用机制的原子理解,并确定了减少热量含量以治疗疾病的新甜味剂组合。

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