Wen Juan, Pasman Raymond, Manders Erik M M, Setlow Peter, Brul Stanley
Molecular Biology and Microbial Food Safety, Swammerdam Institute for Life Sciences, University of Amsterdam.
Van Leeuwenhoek Centre for Advanced Microscopy, Swammerdam Institute for Life Sciences, University of Amsterdam; Confocal.nl BV.
J Vis Exp. 2019 Apr 15(146). doi: 10.3791/59388.
The small size of spores and the relatively low abundance of germination proteins, cause difficulties in their microscopic analyses using epifluorescence microscopy. Super-resolution three-dimensional Structured Illumination Microscopy (3D-SIM) is a promising tool to overcome this hurdle and reveal the molecular details of the process of germination of Bacillus subtilis (B. subtilis) spores. Here, we describe the use of a modified SIMcheck (ImageJ)-assistant 3D imaging process and fluorescent reporter proteins for SIM microscopy of B. subtilis spores' germinosomes, cluster(s) of germination proteins. We also present a (standard)3D-SIM imaging procedure for FM4-64 staining of B. subtilis spore membranes. By using these procedures, we obtained unsurpassed resolution for germinosome localization and show that >80% of B. subtilis KGB80 dormant spores obtained after sporulation on defined minimal MOPS medium have one or two GerD-GFP and GerKB-mCherry foci. Bright foci were also observed in FM4-64 stained spores' 3D-SIM images suggesting that inner membrane lipid domains of different fluidity likely exist. Further studies that use double labeling procedures with membrane dyes and germinosome reporter proteins to assess co-localization and thus get an optimal overview of the organization of Bacillus germination proteins in the inner spore membrane are possible.
孢子体积小,且萌发蛋白的丰度相对较低,这使得利用落射荧光显微镜对其进行微观分析存在困难。超分辨率三维结构光照显微镜(3D-SIM)是一种很有前景的工具,可克服这一障碍,并揭示枯草芽孢杆菌孢子萌发过程的分子细节。在此,我们描述了一种经改良的SIMcheck(ImageJ)辅助三维成像过程以及荧光报告蛋白在枯草芽孢杆菌孢子萌发体(即萌发蛋白簇)的SIM显微镜观察中的应用。我们还展示了一种用于枯草芽孢杆菌孢子膜FM4-64染色的(标准)三维结构光照显微镜成像程序。通过使用这些程序,我们获得了用于萌发体定位的无与伦比的分辨率,并表明在限定的最小MOPS培养基上产孢后获得的超过80%的枯草芽孢杆菌KGB80休眠孢子具有一个或两个GerD-GFP和GerKB-mCherry焦点。在FM4-64染色孢子的三维结构光照显微镜图像中也观察到明亮的焦点,这表明可能存在不同流动性的内膜脂质结构域。利用膜染料和萌发体报告蛋白的双重标记程序来评估共定位,从而全面了解芽孢杆菌萌发蛋白在孢子内膜中的组织方式的进一步研究是可行的。