Chung J C, Sciaky N, Gross D J
Department of Biochemistry and Molecular Biology, University of Massachusetts, Amherst 01003-4505, USA.
Biophys J. 1997 Aug;73(2):1089-102. doi: 10.1016/S0006-3495(97)78141-4.
Binding of fluorescein-conjugated epidermal growth factor (EGF) to individual A431 cells at 4 degrees C is measured by a quantitative fluorescence imaging technique. After background fluorescence and cell autofluorescence photobleaching corrections, the kinetic data are fit to simple models of one monovalent site and two independent monovalent sites, both of which include a first-order dye photobleaching process. Model simulations and the results from data analysis indicate that the one-monovalent-site model does not describe EGF binding kinetics at the single-cell level, whereas the two-site model is consistent with, but not proved by, the single-cell binding data. In addition, the kinetics of binding of fluorescein-EGF to different cells from the same coverslip often differ significantly from each other, indicating cell-to-cell variations in the binding properties of the EGF receptor.
采用定量荧光成像技术测定了4℃下荧光素偶联的表皮生长因子(EGF)与单个A431细胞的结合。在对背景荧光和细胞自发荧光光漂白进行校正后,将动力学数据拟合为一个单价位点和两个独立单价位点的简单模型,这两个模型均包括一级染料光漂白过程。模型模拟和数据分析结果表明,单价位点模型不能描述单细胞水平上的EGF结合动力学,而双位点模型与单细胞结合数据一致,但未经其证实。此外,来自同一盖玻片的不同细胞上荧光素-EGF的结合动力学通常彼此差异显著,这表明EGF受体的结合特性存在细胞间差异。