Erasmus Medical Centre Rotterdam, Department of Pathology, Optical Imaging Centre, 3000 CA, Rotterdam, The Netherlands.
Delft University of Technology, Department of Imaging Physics, 2628 CD, Delft, The Netherlands.
Biol Open. 2022 Nov 1;11(11). doi: 10.1242/bio.059417. Epub 2022 Nov 21.
Focal adhesions (FAs) are the main cellular structures to link the intracellular cytoskeleton to the extracellular matrix. FAs mediate cell adhesion, are important for cell migration and are involved in many (patho)-physiological processes. Here we examined FAs and their associated actin fibres using correlative fluorescence and scanning electron microscopy (SEM). We used fluorescence images of cells expressing paxillin-GFP to define the boundaries of FA complexes in SEM images, without using SEM contrast enhancing stains. We observed that SEM contrast was increased around the actin fibre entry site in 98% of FAs, indicating increases in protein density and possibly also phosphorylation levels in this area. In nearly three quarters of the FAs, these nanostructures had a fork shape, with the actin forming the stem and the high-contrast FA areas the fork. In conclusion, the combination of fluorescent and electron microscopy allowed accurate localisation of a highly abundant, novel fork structure at the FA-actin interface.
焦点黏附(FA)是将细胞内的细胞骨架与细胞外基质连接起来的主要细胞结构。FA 介导细胞黏附,对细胞迁移很重要,并且参与许多(病理)生理过程。在这里,我们使用荧光和扫描电子显微镜(SEM)检查了 FA 和相关的肌动蛋白纤维。我们使用表达 GFP 结合蛋白的细胞的荧光图像来定义 SEM 图像中 FA 复合物的边界,而不使用 SEM 对比增强染色。我们观察到,在 98%的 FA 中,SEM 对比度在肌动蛋白纤维进入部位周围增加,这表明该区域的蛋白质密度和可能的磷酸化水平增加。在近四分之三的 FA 中,这些纳米结构呈叉形,肌动蛋白形成茎,高对比度的 FA 区域形成叉。总之,荧光和电子显微镜的结合允许在 FA-肌动蛋白界面处精确定位高度丰富的新型叉状结构。