首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Identification of Distinct Conformations of the Angiotensin-II Type 1 Receptor Associated with the Gq/11 Protein Pathway and the β-Arrestin Pathway Using Molecular Dynamics Simulations
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Identification of Distinct Conformations of the Angiotensin-II Type 1 Receptor Associated with the Gq/11 Protein Pathway and the β-Arrestin Pathway Using Molecular Dynamics Simulations

机译:使用分子动力学模拟鉴定与Gq / 11蛋白途径和β-arrestin途径相关的血管紧张素II型1型受体的不同构象

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摘要

Biased signaling represents the ability of G protein-coupled receptors to engage distinct pathways with various efficacies depending on the ligand used or on mutations in the receptor. The angiotensin-II type 1 (AT1) receptor, a prototypical class A G protein-coupled receptor, can activate various effectors upon stimulation with the endogenous ligand angiotensin-II (AngII), including the Gq/11 protein and β-arrestins. It is believed that the activation of those two pathways can be associated with distinct conformations of the AT1 receptor. To verify this hypothesis, microseconds of molecular dynamics simulations were computed to explore the conformational landscape sampled by the WT-AT1 receptor, the N111G-AT1 receptor (constitutively active and biased for the Gq/11 pathway), and the D74N-AT1 receptor (biased for the β-arrestin1 and -2 pathways) in their apo-forms and in complex with AngII. The molecular dynamics simulations of the AngII-WT-AT1, N111G-AT1, and AngII-N111G-AT1 receptors revealed specific structural rearrangements compared with the initial and ground state of the receptor. Simulations of the D74N-AT1 receptor revealed that the mutation stabilizes the receptor in the initial ground state. The presence of AngII further stabilized the ground state of the D74N-AT1 receptor. The biased agonist [Sar1,Ile8]AngII also showed a preference for the ground state of the WT-AT1 receptor compared with AngII. These results suggest that activation of the Gq/11 pathway is associated with a specific conformational transition stabilized by the agonist, whereas the activation of the β-arrestin pathway is linked to the stabilization of the ground state of the receptor.
机译:偏倚的信号传导代表G蛋白偶联受体以不同的效率参与不同途径的能力,这取决于所使用的配体或受体中的突变。典型的A类A G蛋白偶联受体-血管紧张素II 1型(AT1)受体在受到内源性配体血管紧张素II(AngII)刺激后可以激活各种效应子,包括Gq / 11蛋白和β-抑制蛋白。相信这两个途径的激活可以与AT1受体的不同构象有关。为了验证这一假设,计算了分子微秒的分子动力学模拟,以探索WT-AT1受体,N111G-AT1受体(对Gq / 11途径具有组成性活性和偏向性)和D74N-AT1受体(偏向于β-arrestin1和-2途径)的apo形式以及与AngII的复合体。 AngII-WT-AT1,N111G-AT1和AngII-N111G-AT1受体的分子动力学模拟显示,与受体的初始状态和基态相比,它们具有特定的结构重排。 D74N-AT1受体的模拟显示该突变使受体稳定在初始基态。 AngII的存在进一步稳定了D74N-AT1受体的基态。偏向激动剂[Sar 1 ,Ile 8 ] AngII与AngII相比,也显示出对WT-AT1受体基态的偏爱。这些结果表明,Gq / 11途径的激活与由激动剂稳定的特定构象转变有关,而β-arrestin途径的激活与受体基态的稳定有关。

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