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视紫红质样 G 蛋白偶联受体中的振动共振、变构和激活。

Vibrational resonance, allostery, and activation in rhodopsin-like G protein-coupled receptors.

机构信息

Physics Department, Carnegie Mellon University, Pittsburgh, PA 15213, USA.

Institute for Software Research, Carnegie Mellon University, Pittsburgh, PA 15213, USA.

出版信息

Sci Rep. 2016 Nov 16;6:37290. doi: 10.1038/srep37290.

Abstract

G protein-coupled receptors are a large family of membrane proteins activated by a variety of structurally diverse ligands making them highly adaptable signaling molecules. Despite recent advances in the structural biology of this protein family, the mechanism by which ligands induce allosteric changes in protein structure and dynamics for its signaling function remains a mystery. Here, we propose the use of terahertz spectroscopy combined with molecular dynamics simulation and protein evolutionary network modeling to address the mechanism of activation by directly probing the concerted fluctuations of retinal ligand and transmembrane helices in rhodopsin. This approach allows us to examine the role of conformational heterogeneity in the selection and stabilization of specific signaling pathways in the photo-activation of the receptor. We demonstrate that ligand-induced shifts in the conformational equilibrium prompt vibrational resonances in the protein structure that link the dynamics of conserved interactions with fluctuations of the active-state ligand. The connection of vibrational modes creates an allosteric association of coupled fluctuations that forms a coherent signaling pathway from the receptor ligand-binding pocket to the G-protein activation region. Our evolutionary analysis of rhodopsin-like GPCRs suggest that specific allosteric sites play a pivotal role in activating structural fluctuations that allosterically modulate functional signals.

摘要

G 蛋白偶联受体是一大类膜蛋白,可被多种结构不同的配体激活,使它们成为高度适应性的信号分子。尽管该蛋白家族的结构生物学最近取得了进展,但配体如何诱导蛋白质结构和动力学的变构变化以发挥其信号功能仍然是一个谜。在这里,我们建议使用太赫兹光谱学结合分子动力学模拟和蛋白质进化网络建模,通过直接探测视紫红质中视黄醛配体和跨膜螺旋的协同波动,来解决激活机制。这种方法使我们能够检查构象异质性在受体光激活中特定信号通路的选择和稳定中的作用。我们证明,配体诱导的构象平衡变化会引发蛋白质结构中的振动共振,将保守相互作用的动力学与活性状态配体的波动联系起来。振动模式的连接创建了耦合波动的变构关联,从而形成了从受体配体结合口袋到 G 蛋白激活区域的连贯信号通路。我们对类视紫红质 G 蛋白偶联受体的进化分析表明,特定的变构位点在激活结构波动方面起着关键作用,这些波动变构调节功能信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2518/5110974/4ff80cba6595/srep37290-f1.jpg

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