Department of Chemistry and Biochemistry, University of California, Los Angeles, CA 90095.
Jules Stein Eye Institute, University of California, Los Angeles, CA 90095.
Proc Natl Acad Sci U S A. 2017 Apr 18;114(16):E3268-E3275. doi: 10.1073/pnas.1620405114. Epub 2017 Apr 3.
Conformational equilibria of G-protein-coupled receptors (GPCRs) are intimately involved in intracellular signaling. Here conformational substates of the GPCR rhodopsin are investigated in micelles of dodecyl maltoside (DDM) and in phospholipid nanodiscs by monitoring the spatial positions of transmembrane helices 6 and 7 at the cytoplasmic surface using site-directed spin labeling and double electron-electron resonance spectroscopy. The photoactivated receptor in DDM is dominated by one conformation with weak pH dependence. In nanodiscs, however, an ensemble of pH-dependent conformational substates is observed, even at pH 6.0 where the MIIbH form defined by proton uptake and optical spectroscopic methods is reported to be the sole species present in native disk membranes. In nanodiscs, the ensemble of substates in the photoactivated receptor spontaneously decays to that characteristic of the inactive state with a lifetime of ∼16 min at 20 °C. Importantly, transducin binding to the activated receptor selects a subset of the ensemble in which multiple substates are apparently retained. The results indicate that in a native-like lipid environment rhodopsin activation is not analogous to a simple binary switch between two defined conformations, but the activated receptor is in equilibrium between multiple conformers that in principle could recognize different binding partners.
G 蛋白偶联受体(GPCRs)的构象平衡与细胞内信号密切相关。本研究通过定点自旋标记和双电子-电子共振光谱技术,在十二烷基麦芽糖(DDM)胶束和磷脂纳米盘中研究了 GPCR 视紫红质的构象亚稳态,监测了细胞质表面跨膜螺旋 6 和 7 的空间位置。在 DDM 中,光激活的受体主要呈现一种构象,其对 pH 的依赖性较弱。然而,在纳米盘中,即使在 pH 值为 6.0 时,也观察到了一组依赖于 pH 的构象亚稳态,而质子摄取和光学光谱方法定义的 MIIbH 形式被报道为天然盘膜中存在的唯一物种。在纳米盘中,光激活受体的亚稳态集合自发衰减到无活性状态的特征,在 20°C 下的半衰期约为 16 分钟。重要的是,转导蛋白与激活的受体结合,选择了集合中的一个子集,其中显然保留了多个亚稳态。结果表明,在类似天然的脂质环境中,视紫红质的激活与两种定义构象之间的简单二元开关并不相似,而是激活的受体处于多个构象之间的平衡状态,这些构象原则上可以识别不同的结合伴侣。