Chen Ye, Periasamy Ammasi
Department of Biology, W M Keck Center for Cellular Imaging, Gilmer Hall, University of Virginia, Charlottesville, VA 22904, USA.
Indian J Exp Biol. 2007 Jan;45(1):48-57.
Microscopy has become an essential tool for cellular protein investigations. The development of new fluorescent markers such as green fluorescent proteins generated substantial opportunities to monitor protein-protein interactions qualitatively and quantitatively using advanced fluorescence microscope techniques including wide-field, confocal, multiphoton, spectral imaging, lifetime, and correlation spectroscopy. The specific aims of the investigation of protein dynamics in live specimens dictate the selection of the microscope methodology. In this article confocal and spectral imaging methods to monitor the dimerization of alpha enhancer binding protein (C/EBPalpha) in the pituitary GHFT1-5 living cell nucleus have been described. Also outline are issues involved in protein imaging using light microscopy techniques and the advantages of lifetime imaging of protein-protein interactions.
显微镜检查已成为细胞蛋白质研究的重要工具。新型荧光标记物(如绿色荧光蛋白)的开发为使用包括宽视野、共聚焦、多光子、光谱成像、寿命和相关光谱等先进荧光显微镜技术定性和定量监测蛋白质-蛋白质相互作用创造了大量机会。对活标本中蛋白质动力学进行研究的具体目标决定了显微镜方法的选择。本文描述了用于监测垂体GHFT1-5活细胞核中α增强子结合蛋白(C/EBPα)二聚化的共聚焦和光谱成像方法。还概述了使用光学显微镜技术进行蛋白质成像所涉及的问题以及蛋白质-蛋白质相互作用寿命成像的优势。