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荧光标记的生长因子分子可作为受体结合和内吞作用的探针。

Fluorescent-labeled growth factor molecules serve as probes for receptor binding and endocytosis.

作者信息

Carraway K L, Cerione R A

机构信息

Department of Biochemistry, Molecular, and Cell Biology, Cornell University, Ithaca, New York 14853.

出版信息

Biochemistry. 1993 Nov 16;32(45):12039-45. doi: 10.1021/bi00096a014.

Abstract

In this report, we describe the applicability of fluorescein-labeled EGF (FITC-EGF) in monitoring the interaction between EGF and its cellular receptor in real time. This work takes advantage of previous studies that demonstrated that EGF may be labeled at its amino terminus with FITC without significant deleterious effects on the binding of the growth factor to its receptor or on the ability of the growth factor to activate the intrinsic tyrosine kinase activity of the receptor. When suspended human epidermoid carcinoma (A431) cells were treated with FITC-EGF, a biphasic quenching of the FITC fluorescence was observed. Both phases were blocked when the experiments were performed in the presence of excess unlabeled EGF. The first phase, in which the FITC emission was quenched by 8-10%, was complete within 30 s. This rapid quenching was attributed to changes in the rotational mobility of the EGF molecule that accompany its binding to receptors. The slower phase required 20-30 min for completion and resulted in the further quenching of the FITC fluorescence by 30-40%. This slower phase appeared to reflect the internalization of the receptor and its routing to acidic intracellular compartments. The rapid fluorescence decay phase was used to determine the rate constants (k(on) and k-off)) for the interaction of FITC-EGF with receptors on the surface of cells.

摘要

在本报告中,我们描述了荧光素标记的表皮生长因子(FITC - EGF)在实时监测表皮生长因子与其细胞受体之间相互作用方面的适用性。这项工作利用了先前的研究成果,这些研究表明表皮生长因子可在其氨基末端用异硫氰酸荧光素(FITC)标记,而不会对生长因子与其受体的结合或生长因子激活受体内在酪氨酸激酶活性的能力产生显著有害影响。当用FITC - EGF处理悬浮的人表皮样癌细胞(A431)时,观察到FITC荧光的双相猝灭。当在过量未标记的表皮生长因子存在下进行实验时,两个阶段均被阻断。第一阶段,FITC发射猝灭8 - 10%,在30秒内完成。这种快速猝灭归因于表皮生长因子分子与受体结合时其旋转迁移率的变化。较慢的阶段需要20 - 30分钟完成,导致FITC荧光进一步猝灭30 - 40%。这个较慢的阶段似乎反映了受体的内化及其向酸性细胞内区室的转运。快速荧光衰减阶段用于确定FITC - EGF与细胞表面受体相互作用的速率常数(k(on)和k(off))。

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