Li Ying, Qian Zhenyu, Ma Li, Hu Shuxin, Nong Daguan, Xu Chunhua, Ye Fangfu, Lu Ying, Wei Guanghong, Li Ming
Beijing National Laboratory for Condensed Matter Physics and CAS Key Laboratory of Soft Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.
State Key Laboratory of Surface Physics, Key Laboratory for Computational Physical Sciences (Ministry of Education), and Department of Physics, Fudan University, Shanghai 200433, China.
Nat Commun. 2016 Sep 30;7:12906. doi: 10.1038/ncomms12906.
Research on the dynamics of single-membrane proteins remains underdeveloped due to the lack of proper approaches that can probe in real time the protein's insertion depth in lipid bilayers. Here we report a single-molecule visualization method to track both vertical insertion and lateral diffusion of membrane proteins in supported lipid bilayers by exploiting the surface-induced fluorescence attenuation (SIFA) of fluorophores. The attenuation follows a d dependency, where d is the fluorophore-to-surface distance. The method is validated by observing the antimicrobial peptide LL-37 to transfer among five transmembrane positions: the surface, the upper leaflet, the centre, the lower leaflet and the bottom of the lipid bilayer. These results demonstrate the power of SIFA to study protein-membrane interactions and provide unprecedented in-depth understanding of molecular mechanisms of the insertion and translocation of membrane proteins.
由于缺乏能够实时探测蛋白质在脂质双层中插入深度的合适方法,单膜蛋白动力学的研究仍不充分。在此,我们报告一种单分子可视化方法,通过利用荧光团的表面诱导荧光衰减(SIFA)来追踪膜蛋白在支撑脂质双层中的垂直插入和横向扩散。衰减遵循d依赖性,其中d是荧光团到表面的距离。通过观察抗菌肽LL-37在脂质双层的五个跨膜位置(表面、上叶、中心、下叶和底部)之间的转移,验证了该方法。这些结果证明了SIFA在研究蛋白质-膜相互作用方面的能力,并为膜蛋白插入和转运的分子机制提供了前所未有的深入理解。