Wang Shengliu, Li Shuoguo, Ji Gang, Huang Xiaojun, Sun Fei
National Key Laboratory of Biomacromolecules, CAS Center for Excellence in Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing, 100101 China.
Center for Biological Imaging, Institute of Biophysics, Chinese Academy of Sciences, Beijing, 100101 China.
Biophys Rep. 2017;3(1):8-16. doi: 10.1007/s41048-017-0035-x. Epub 2017 Mar 21.
Correlative cryo-fluorescence and cryo-electron microscopy (cryo-CLEM) system has been fast becoming a powerful technique with the advantage to allow the fluorescent labeling and direct visualization of the close-to-physiologic ultrastructure in cells at the same time, offering unique insights into the ultrastructure with specific cellular function. There have been various engineered ways to achieve cryo-CLEM including the commercial FEI iCorr system that integrates fluorescence microscope into the column of transmission electron microscope. In this study, we applied the approach of the cryo-CLEM-based iCorr to image the syntaphilin-immobilized neuronal mitochondria to test the performance of the FEI iCorr system and determine its correlation accuracy. Our study revealed the various morphologies of syntaphilin-immobilized neuronal mitochondria that interact with microtubules and suggested that the cryo-CLEM procedure by the FEI iCorr system is suitable with a half micron-meter correlation accuracy to study the cellular organelles that have a discrete distribution and large size, mitochondrion, Golgi complex, lysosome, .
相关低温荧光和低温电子显微镜(cryo-CLEM)系统正迅速成为一种强大的技术,其优势在于能够同时对细胞中接近生理状态的超微结构进行荧光标记和直接可视化,为具有特定细胞功能的超微结构提供独特的见解。已经有多种工程方法来实现cryo-CLEM,包括将荧光显微镜集成到透射电子显微镜柱中的商业FEI iCorr系统。在本研究中,我们应用基于cryo-CLEM的iCorr方法对与微管相互作用的Syntaxin固定的神经元线粒体进行成像,以测试FEI iCorr系统的性能并确定其相关精度。我们的研究揭示了Syntaxin固定的神经元线粒体与微管相互作用的各种形态,并表明FEI iCorr系统的cryo-CLEM程序适用于研究具有离散分布和大尺寸的细胞器,如线粒体、高尔基体、溶酶体等,其相关精度可达半微米。