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Investigating allosteric effects on the functional dynamics of β2-adrenergic ternary complexes with enhanced-sampling simulations

机译:使用增强采样模拟研究变构作用对β2-肾上腺素三元配合物功能动力学的影响

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摘要

Signalling by G-protein coupled receptors usually occurs via ternary complexes formed under cooperative binding between the receptor, a ligand and an intracellular binding partner (a G-protein or β-arrestin). While a global rational for allosteric effects in ternary complexes would be of great help in designing ligands with specific effects, the paucity of structural data for ternary complexes with β-arrestin, together with the intrinsic difficulty of characterizing the dynamics involved in the allosteric coupling, have hindered the efforts to devise such a model. Here we have used enhanced-sampling atomistic molecular-dynamics simulations to investigate the dynamics and complex formation mechanisms of both β-arrestin- and Gs-complexes with the β2-adrenergic receptor (ADRB2) in its apo-form and in the presence of four small ligands that exert different allosteric effects. Our results suggest that the structure and dynamics of arrestin–ADRB2 complexes depend strongly on the nature of the small ligands. The complexes exhibit a variety of different coupling orientations in terms of the depth of the finger loop in the receptor and activation states of ADRB2. The simulations also allow us to characterize the cooperativity between the ligand and intracellular binding partner (IBP). Based on the complete and consistent results, we propose an experimentally testable extended ternary complex model, where direction of the cooperative effect between ligand and IBP (positive or negative) and its magnitude are predicted to be a characteristic of the ligand signaling bias. This paves the avenue to the rational design of ligands with specific functional effects.
机译:由G蛋白偶联受体发出的信号通常通过在受体,配体和细胞内结合配偶体(G蛋白或β-arrestin)之间的协同结合下形成的三元复合物发生。虽然对于三元配合物的变构作用的全球合理性在设计具有特定作用的配体方面将大有帮助,但缺乏β-arrestin的三元配合物的结构数据,以及表征与变构偶联有关的动力学的固有困难,阻碍了设计这种模型的努力。在这里,我们已经使用增强采样原子分子动力学模拟来研究β-arrestin-和Gs-复合物与β2-肾上腺素能受体(ADRB2)在其脱辅基形式和四种存在下的动力学和复合物形成机理。发挥不同变构作用的小配体。我们的结果表明,restarin-ADRB2复合物的结构和动力学在很大程度上取决于小配体的性质。就手指环在受体中的深度和ADRB2的激活状态而言,复合物表现出多种不同的偶联取向。模拟还使我们能够表征配体与细胞内结合伴侣(IBP)之间的协同作用。基于完整和一致的结果,我们提出了一个可实验测试的扩展三元复合物模型,其中配体与IBP之间的协同作用方向(正或负)及其幅度被预测为配体信号偏向的特征。这为合理设计具有特定功能作用的配体铺平了道路。

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