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一种用于测量活细胞中激素与细胞表面受体结合和解离动力学的停流荧光各向异性方法。

A stopped-flow fluorescence anisotropy method for measuring hormone binding and dissociation kinetics with cell-surface receptors in living cells.

作者信息

Wilkinson John C, Beechem Joseph M, Staros James V

机构信息

Vanderbilt University, Department of Biological Sciences, Nashville, TN 37235, USA.

出版信息

J Recept Signal Transduct Res. 2002 Feb-Nov;22(1-4):357-71. doi: 10.1081/rrs-120014607.

Abstract

We have developed a system for extending stopped-flow analysis to the kinetics of ligand capture and release by cell surface receptors in living cells. While most mammalian cell lines cannot survive the shear forces associated with turbulent, stopped-flow mixing, we determined that 32D cells, murine hematopoietic precursor cells, can survive rapid mixing, even at the high flow rates necessary to achieve dwell times as short as 10 msec. In addition, 32D cells do not express any member of the ErbB family of receptors, providing a null background for studying this receptor family. We have established a series of stable, monoclonal 32D-derived cell lines that express the epidermal growth factor (EGF) receptor, ErbB2, or a combination of both at different ratios. Using these cell lines and a homogeneous fluorescent derivative of H22Y-mEGF modified with fluorescein at the amino terminus (F-EGF), we have measured association and dissociation of F-EGF with its receptor. Association was measured by following the time-dependent changes in fluorescence anisotropy after rapidly mixing cells at various cell densities with F-EGF at 1-15nM. Dissociation was measured both by chase experiments in which unlabeled EGF was mixed with cells pre-equilibrated with F-EGF or by dilution of cells equilibrated with F-EGF. Comparison of these dissociation experiments demonstrated that little or no ligand-induced dissociation occurs in the chase dissociation experiments. For each cell line, data from a series of association experiments and dilution dissociation experiments were subjected to global analysis using a two independent receptor-class model. Our analysis is consistent with the presence of two distinct receptor populations, even in cells bearing only the EGF receptor. Increasing the relative expression of ErbB2 leads to an increase in the fraction of high affinity class receptors observed, without altering the total number of EGF binding sites.

摘要

我们开发了一种系统,可将停流分析扩展至活细胞中细胞表面受体捕获和释放配体的动力学研究。虽然大多数哺乳动物细胞系无法承受与湍流、停流混合相关的剪切力,但我们确定32D细胞(小鼠造血前体细胞)能够在快速混合中存活,即使在实现短至10毫秒的停留时间所需的高流速下也是如此。此外,32D细胞不表达ErbB受体家族的任何成员,为研究该受体家族提供了一个空白背景。我们建立了一系列稳定的、源自32D的单克隆细胞系,这些细胞系以不同比例表达表皮生长因子(EGF)受体、ErbB2或两者的组合。使用这些细胞系以及在氨基末端用荧光素修饰的H22Y-mEGF的均相荧光衍生物(F-EGF),我们测量了F-EGF与其受体的结合和解离。通过在各种细胞密度下将细胞与1-15 nM的F-EGF快速混合后,跟踪荧光各向异性随时间的变化来测量结合。通过在未标记的EGF与用F-EGF预平衡的细胞混合的追踪实验或通过稀释用F-EGF平衡的细胞来测量解离。这些解离实验的比较表明,在追踪解离实验中几乎没有或没有配体诱导的解离发生。对于每个细胞系,一系列结合实验和稀释解离实验的数据使用两个独立的受体类模型进行全局分析。我们的分析与存在两个不同的受体群体一致,即使在仅携带EGF受体的细胞中也是如此。增加ErbB2 的相对表达会导致观察到的高亲和力类受体比例增加,而不会改变EGF结合位点的总数。

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