Washington University Center for Cellular Imaging, Washington University School of Medicine, Saint Louis, Missouri, USA.
Washington University Center for Cellular Imaging, Washington University School of Medicine, Saint Louis, Missouri, USA; Departments of Cell Biology and Physiology and Neuroscience, Washington University School of Medicine, Saint Louis, Missouri, USA; Department of Biomedical Engineering, Washington University in Saint Louis, Saint Louis, Missouri, USA.
J Biol Chem. 2020 Nov 13;295(46):15782-15793. doi: 10.1074/jbc.REV120.009633. Epub 2020 Sep 16.
Much of our understanding of the spatial organization of and interactions between cellular organelles and macromolecular complexes has been the result of imaging studies utilizing either light- or electron-based microscopic analyses. These classical approaches, while insightful, are nonetheless limited either by restrictions in resolution or by the sheer complexity of generating multidimensional data. Recent advances in the use and application of X-rays to acquire micro- and nanotomographic data sets offer an alternative methodology to visualize cellular architecture at the nanoscale. These new approaches allow for the subcellular analyses of unstained vitrified cells and three-dimensional localization of specific protein targets and have served as an essential tool in bridging light and electron correlative microscopy experiments. Here, we review the theory, instrumentation details, acquisition principles, and applications of both soft X-ray tomography and X-ray microscopy and how the use of these techniques offers a succinct means of analyzing three-dimensional cellular architecture. We discuss some of the recent work that has taken advantage of these approaches and detail how they have become integral in correlative microscopy workflows.
我们对细胞细胞器和大分子复合物的空间组织及其相互作用的大部分理解,都是通过利用基于光或电子的显微镜分析进行成像研究的结果。这些经典方法虽然具有启发性,但由于分辨率的限制或生成多维数据的复杂性,仍然存在局限性。最近在使用 X 射线获取微观和纳观断层数据集方面的进展为在纳米尺度上可视化细胞结构提供了一种替代方法。这些新方法允许对未经染色的玻璃化细胞进行亚细胞分析,并对特定蛋白质靶标进行三维定位,并且已经成为连接光和电子相关显微镜实验的重要工具。在这里,我们回顾了软 X 射线断层扫描和 X 射线显微镜的理论、仪器细节、采集原理和应用,以及这些技术的使用如何提供了一种简洁的方法来分析三维细胞结构。我们讨论了一些利用这些方法的最新工作,并详细介绍了它们如何成为相关显微镜工作流程的重要组成部分。