Haraguchi Tokuko
CREST Research Project of the Japan Science and Technology Corporation, Kansai Advanced Research Center, Kobe, Japan.
Cell Struct Funct. 2002 Oct;27(5):333-4. doi: 10.1247/csf.27.333.
In the last decade, the long-standing biologist's dream of seeing the molecular events within the living cell came true. This technological achievement is largely due to the development of fluorescence microscopy technologies and the advent of green fluorescent protein as a fluorescent probe. Such imaging technologies allowed us to determine the subcellular localization, mobility and transport pathways of specific proteins and even visualize protein-protein interactions of single molecules in living cells. Direct observation of such molecular dynamics can provide important information about cellular events that cannot be obtained by other methods. Thus, imaging of protein dynamics in living cells becomes an important tool for cell biology to study molecular and cellular functions. In this special issue of review articles, we review various imaging technologies of microscope hardware and fluorescent probes useful for cell biologists, with a focus on recent development of live cell imaging.
在过去十年里,长期以来生物学家观察活细胞内分子事件的梦想成真。这一技术成就很大程度上归功于荧光显微镜技术的发展以及绿色荧光蛋白作为荧光探针的问世。此类成像技术使我们能够确定特定蛋白质的亚细胞定位、移动性和运输途径,甚至能在活细胞中可视化单分子的蛋白质-蛋白质相互作用。对这种分子动力学的直接观察可以提供通过其他方法无法获得的有关细胞事件的重要信息。因此,活细胞中蛋白质动力学成像成为细胞生物学研究分子和细胞功能的重要工具。在这期综述文章特刊中,我们回顾了对细胞生物学家有用的各种显微镜硬件和荧光探针成像技术,重点关注活细胞成像的最新进展。