Nolin Frédérique, Ploton Dominique, Wortham Laurence, Tchelidze Pavel, Bobichon Hélène, Banchet Vincent, Lalun Nathalie, Terryn Christine, Michel Jean
Laboratoire de Recherche en Nanosciences EA 4682, UFR Sciences Exactes et Naturelles, Université de Reims Champagne Ardenne, Reims, France.
Methods Mol Biol. 2015;1228:145-58. doi: 10.1007/978-1-4939-1680-1_12.
The cell nucleus is a crowded volume in which the concentration of macromolecules is high. These macromolecules sequester most of the water molecules and ions which, together, are very important for stabilization and folding of proteins and nucleic acids. To better understand how the localization and quantity of water and ions vary with nuclear activity, it is necessary to study them simultaneously by using newly developed cell imaging approaches. Some years ago, we showed that dark-field cryo-Scanning Transmission Electron Microscopy (cryo-STEM) allows quantification of the mass percentages of water, dry matter, and elements (among which are ions) in freeze-dried ultrathin sections. To overcome the difficulty of clearly identifying nuclear subcompartments imaged by STEM in ultrathin cryo-sections, we developed a new cryo correlative light and STEM imaging procedure. This combines fluorescence imaging of nuclear GFP-tagged proteins to identify, within cryo ultrathin sections, regions of interest which are then analyzed by STEM for quantification of water and identification and quantification of ions. In this chapter we describe the new setup we have developed to perform this cryo-correlative light and STEM imaging approach, which allows a targeted nano analysis of water and ions in nuclear compartments.
细胞核是一个拥挤的区域,其中大分子的浓度很高。这些大分子隔离了大部分水分子和离子,而水分子和离子对于蛋白质和核酸的稳定及折叠非常重要。为了更好地理解水和离子的定位及数量如何随核活性变化,有必要使用新开发的细胞成像方法同时对它们进行研究。几年前,我们表明暗场冷冻扫描透射电子显微镜(cryo-STEM)能够对冻干超薄切片中的水、干物质和元素(包括离子)的质量百分比进行定量。为了克服在超薄冷冻切片中清晰识别STEM成像的核亚区室的困难,我们开发了一种新的冷冻相关光和STEM成像程序。该程序将核GFP标记蛋白的荧光成像结合起来,以在冷冻超薄切片内识别感兴趣的区域,然后通过STEM对这些区域进行分析,以定量水并识别和定量离子。在本章中,我们描述了为执行这种冷冻相关光和STEM成像方法而开发的新装置,该方法允许对核区室中的水和离子进行靶向纳米分析。