School of Physics, Huazhong University of Science and Technology, Wuhan 430074, China.
JILA, National Institute of Standards and Technology and University of Colorado, Boulder, Colorado 80309, USA.
Phys Rev Lett. 2020 Aug 7;125(6):068102. doi: 10.1103/PhysRevLett.125.068102.
We quantified the equilibrium (un)folding free energy ΔG_{0} of an eight-amino-acid region starting from the fully folded state of the model membrane-protein bacteriorhodopsin using single-molecule force spectroscopy. Analysis of equilibrium and nonequilibrium data yielded consistent, high-precision determinations of ΔG_{0} via multiple techniques (force-dependent kinetics, Crooks fluctuation theorem, and inverse Boltzmann analysis). We also deduced the full 1D projection of the free-energy landscape in this region. Importantly, ΔG_{0} was determined in bacteriorhodopsin's native bilayer, an advance over traditional results obtained by chemical denaturation in nonphysiological detergent micelles.
我们使用单分子力谱技术从模型膜蛋白菌紫质的完全折叠状态出发,定量测定了一个由 8 个氨基酸组成的区域的平衡(不)折叠自由能ΔG_{0}。通过多种技术(力相关动力学、克鲁克斯涨落定理和逆玻尔兹曼分析)对平衡和非平衡数据的分析,得出了一致的、高精度的ΔG_{0}测定结果。我们还推导出了该区域的完整 1D 自由能景观投影。重要的是,ΔG_{0}是在菌紫质的天然双层中确定的,这一进展超过了传统的在非生理去污剂胶束中通过化学变性获得的结果。