Science for Life Laboratory, Department of Applied Physics, KTH Royal Institute of Technology, Stockholm, Sweden.
Science for Life Laboratory, Department of Cell and Molecular Biology, Uppsala University, Uppsala, Sweden.
Elife. 2021 Jan 28;10:e60715. doi: 10.7554/eLife.60715.
Ligand binding stabilizes different G protein-coupled receptor states via a complex allosteric process that is not completely understood. Here, we have derived free energy landscapes describing activation of the β adrenergic receptor bound to ligands with different efficacy profiles using enhanced sampling molecular dynamics simulations. These reveal shifts toward active-like states at the Gprotein-binding site for receptors bound to partial and full agonists, and that the ligands modulate the conformational ensemble of the receptor by tuning protein microswitches. We indeed find an excellent correlation between the conformation of the microswitches close to the ligand binding site and in the transmembrane region and experimentally reported cyclic adenosine monophosphate signaling responses. Dimensionality reduction further reveals the similarity between the unique conformational states induced by different ligands, and examining the output of classifiers highlights two distant hotspots governing agonism on transmembrane helices 5 and 7.
配体结合通过一个复杂的变构过程稳定了不同的 G 蛋白偶联受体状态,而这个过程并没有被完全理解。在这里,我们通过增强采样分子动力学模拟,推导出了描述与不同效能谱配体结合的β肾上腺素能受体激活的自由能景观。这些结果表明,与部分激动剂和完全激动剂结合的受体在 G 蛋白结合位点向活性样状态发生转变,并且配体通过调节蛋白质微开关来调节受体的构象集合。我们确实发现,靠近配体结合位点和跨膜区域的微开关的构象与实验报告的环磷酸腺苷信号转导反应之间存在极好的相关性。降维进一步揭示了不同配体诱导的独特构象状态之间的相似性,而检查分类器的输出则突出了两个控制跨膜 5 和 7 螺旋激动剂的远距离热点。