Giugni T D, Braslau D L, Haigler H T
J Cell Biol. 1987 May;104(5):1291-7. doi: 10.1083/jcb.104.5.1291.
The lateral mobility of the epidermal growth factor (EGF) receptor in the plane of the plasma membrane of cultured A431 cells was investigated using direct and indirect fluorescent probes to measure the generation and relaxation of electric field-induced receptor asymmetry. A steady electric field of 15 V/cm for 30 min at 23 degrees C induced a redistribution of the unoccupied EGF receptor such that there was approximately a three-fold higher concentration of receptors at the cathode-facing pole. After termination of the field, the unoccupied receptors back diffused at 37 degrees C with a rate corresponding to a diffusion coefficient of 2.6-3.5 X 10(-10) cm2/s. No diffusion was detected at 4 degrees C. Formation of the hormone-receptor complex is known to induce receptor clustering and internalization. By inhibiting internalization with metabolic poisons, we were able to study the cell surface mobility of clusters of the hormone-receptor complex. The same degree of asymmetry was induced when the occupied receptor was exposed to an electric field and the rate of back diffusion of clusters of the hormone-receptor complex corresponded to a diffusion coefficient of 0.68-0.95 X 10(-10) cm2/s. Although the unoccupied receptor is somewhat more mobile than the hormone-receptor complex, it was still far less mobile than one would predict for an unconstrained protein imbedded in a phospholipid bilayer.
利用直接和间接荧光探针来测量电场诱导的受体不对称性的产生和弛豫,研究了培养的A431细胞膜平面中表皮生长因子(EGF)受体的横向流动性。在23摄氏度下,15V/cm的稳定电场持续30分钟,可诱导未占据的EGF受体重新分布,使得面向阴极的极点处受体浓度大约高出三倍。电场终止后,未占据的受体在37摄氏度下反向扩散,扩散速率对应的扩散系数为2.6 - 3.5×10⁻¹⁰ cm²/s。在4摄氏度下未检测到扩散。已知激素 - 受体复合物的形成会诱导受体聚集和内化。通过用代谢毒物抑制内化,我们能够研究激素 - 受体复合物簇在细胞表面的流动性。当占据的受体暴露于电场时,会诱导相同程度的不对称性,并且激素 - 受体复合物簇的反向扩散速率对应的扩散系数为0.68 - 0.95×10⁻¹⁰ cm²/s。尽管未占据的受体比激素 - 受体复合物的流动性稍高,但仍远低于嵌入磷脂双分子层中无约束蛋白质的预期流动性。