Sako Yasushi, Uyemura Takeshi
Department of Physiology and Biosignaling, Graduate School of Medicine, Osaka University.
Cell Struct Funct. 2002 Oct;27(5):357-65. doi: 10.1247/csf.27.357.
Marvelous background rejection in total internal reflection fluorescence microscopy (TIR-FM) has made it possible to visualize single-fluorophores in living cells. Cell signaling proteins including peptide hormones, membrane receptors, small G proteins, cytoplasmic kinases as well as small signaling compounds have been conjugated with single chemical fluorophore or tagged with green fluorescent proteins and visualized in living cells. In this review, the reasons why single-molecule analysis is essential for studies of intracellular protein systems such as cell signaling system are discussed, the instrumentation of TIR-FM for single-molecule imaging in living cells is explained, and how single molecule visualization has been used in cell biology is illustrated by way of two examples: signaling of epidermal growth factor in mammalian cells and chemotaxis of Dictyostelium amoeba along a cAMP gradient. Single-molecule analysis is an ideal method to quantify the parameters of reaction dynamics and kinetics of unitary processes within intracellular protein systems. Knowledge of these parameters is crucial for the understanding of the molecular mechanisms underlying intracellular events, thus single-molecule imaging in living cells will be one of the major technologies in cellular nanobiology.
全内反射荧光显微镜(TIR-FM)出色的背景抑制能力使得在活细胞中可视化单个荧光团成为可能。包括肽激素、膜受体、小G蛋白、细胞质激酶以及小信号化合物在内的细胞信号蛋白已与单个化学荧光团偶联,或用绿色荧光蛋白标记,并在活细胞中实现可视化。在本综述中,讨论了单分子分析对于细胞信号系统等细胞内蛋白质系统研究至关重要的原因,解释了用于活细胞单分子成像的TIR-FM仪器,并通过两个例子说明单分子可视化在细胞生物学中的应用:哺乳动物细胞中表皮生长因子的信号传导以及盘基网柄菌变形虫沿cAMP梯度的趋化性。单分子分析是量化细胞内蛋白质系统中单一过程反应动力学和动力学参数的理想方法。了解这些参数对于理解细胞内事件背后的分子机制至关重要,因此活细胞中的单分子成像将成为细胞纳米生物学的主要技术之一。