Franke Christian, Chum Tomáš, Kvíčalová Zuzana, Glatzová Daniela, Gentsch Gregor Jörg, Rodriguez Alvaro, Helmerich Dominic A, Herdly Lucas, Mavila Harsha, Frank Otakar, Brdička Tomáš, van de Linde Sebastian, Cebecauer Marek
Institute of Applied Optics and Biophysics, Friedrich Schiller University Jena, Jena, Germany.
Jena Center for Soft Matter, Friedrich Schiller University Jena, Jena, Germany.
Commun Biol. 2022 Mar 9;5(1):218. doi: 10.1038/s42003-022-03152-y.
Cells communicate with their environment via surface receptors, but nanoscopic receptor organization with respect to complex cell surface morphology remains unclear. This is mainly due to a lack of accessible, robust and high-resolution methods. Here, we present an approach for mapping the topography of receptors at the cell surface with nanometer precision. The method involves coating glass coverslips with glycine, which preserves the fine membrane morphology while allowing immobilized cells to be positioned close to the optical surface. We developed an advanced and simplified algorithm for the analysis of single-molecule localization data acquired in a biplane detection scheme. These advancements enable direct and quantitative mapping of protein distribution on ruffled plasma membranes with near isotropic 3D nanometer resolution. As demonstrated successfully for CD4 and CD45 receptors, the described workflow is a straightforward quantitative technique to study molecules and their interactions at the complex surface nanomorphology of differentiated metazoan cells.
细胞通过表面受体与其环境进行通讯,但关于复杂细胞表面形态的纳米级受体组织仍不清楚。这主要是由于缺乏可及、稳健且高分辨率的方法。在此,我们提出一种以纳米精度绘制细胞表面受体拓扑结构的方法。该方法包括用甘氨酸包被玻璃盖玻片,这能保留精细的膜形态,同时使固定的细胞靠近光学表面定位。我们开发了一种先进且简化的算法,用于分析在双平面检测方案中获取的单分子定位数据。这些进展使得能够以接近各向同性的三维纳米分辨率直接且定量地绘制蛋白质在有褶皱的质膜上的分布。正如对CD4和CD45受体成功展示的那样,所描述的工作流程是一种直接的定量技术,用于研究后生动物分化细胞复杂表面纳米形态下的分子及其相互作用。