Department of Chemistry, Indiana University, Bloomington, Indiana, 47405-7102.
Department of Molecular and Cellular Biochemistry, Indiana University, Bloomington, Indiana, 47405-7102.
Protein Sci. 2018 Jun;27(6):1109-1112. doi: 10.1002/pro.3414. Epub 2018 Apr 25.
The conformational equilibria of integral membrane proteins have proven extremely difficult to characterize within native lipid bilayers. To circumvent technical issues, investigations of the structure and stability of α-helical membrane proteins are often carried out in mixed micelle or bicelle solvents that mimic the membrane and facilitate measurements of reversible folding. Under these conditions, the energetics of membrane protein folding are typically proportional to the mole fraction of an anionic detergent in the micelle. However, investigations of the folding and unfolding of bacteriorhodopsin (bR) surprisingly revealed that the folding rate is also highly sensitive to the bulk molar concentration of lipids and detergents. We show here that this rate enhancement coincides with changes in bicelle size and suggest this effect arises through restriction of the conformational search space during folding. In conjunction with previous mutagenic studies, these results provide additional evidence that a topological search limits the rate of bR folding. Furthermore, this finding provides insights into the manner by which micellar and bicellar environments influence the conformational stability of polytopic membrane proteins.
整联膜蛋白的构象平衡在天然脂质双层中极难被描述。为了规避技术问题,对 α-螺旋膜蛋白的结构和稳定性的研究通常在混合胶束或双胶束溶剂中进行,这些溶剂模拟了膜并有助于可还原折叠的测量。在这些条件下,膜蛋白折叠的能量学通常与胶束中阴离子去污剂的摩尔分数成正比。然而,对菌紫质(bR)折叠和去折叠的研究令人惊讶地揭示,折叠速率也对脂质和去污剂的总摩尔浓度高度敏感。我们在这里表明,这种速率增强与双胶束大小的变化一致,并表明这种效应是通过在折叠过程中限制构象搜索空间引起的。结合先前的突变研究,这些结果提供了更多证据表明拓扑搜索限制了 bR 折叠的速率。此外,这一发现为胶束和双胶束环境如何影响多拓扑膜蛋白的构象稳定性提供了新的见解。