Carnally Stewart M, Edwardson J Michael, Barrera Nelson P
Department of Physiology, Pontificia Universidad Católica de Chile, Santiago, Chile.
Methods Mol Biol. 2011;736:47-60. doi: 10.1007/978-1-61779-105-5_4.
Our experimental approach is based on the atomic force microscope (AFM) imaging of epitope-tagged subunits within membrane protein complexes purified in small amounts and decorated by anti-tag antibodies. Furthermore, we can produce simultaneous decoration of protein complexes using Fab fragments and IgG antibodies, which, combined with chemical modification of the substrate, allows us to determine the protein orientation across the cell membrane. Here, we describe a detailed protocol for membrane protein purification, AFM data collection, analysis, and interpretation of results. The protocol also covers basic AFM instrument settings and best practices for both observation of membrane protein complexes by AFM and automatic detection of the structures by an in-house algorithm. Once a sufficient number of membrane protein complexes have been visualized by AFM, data acquisition and processing can be completed in approximately 10 min using a scanning surface of 1 μm(2).
我们的实验方法基于原子力显微镜(AFM)成像,该成像针对的是通过抗标签抗体修饰的少量纯化膜蛋白复合物中的表位标签亚基。此外,我们可以使用Fab片段和IgG抗体对蛋白复合物进行同步修饰,再结合底物的化学修饰,这使我们能够确定蛋白质在细胞膜上的方向。在此,我们描述了一个详细的方案,用于膜蛋白纯化、AFM数据收集、分析以及结果解读。该方案还涵盖了AFM仪器的基本设置以及通过AFM观察膜蛋白复合物和使用内部算法自动检测结构的最佳实践。一旦通过AFM可视化了足够数量的膜蛋白复合物,使用1μm²的扫描表面,大约10分钟即可完成数据采集和处理。