Bene László, Szöllosi János, Szentesi Gergely, Damjanovich László, Gáspár Rezso, Waldmann Thomas A, Damjanovich Sándor
Department of Biophysics and Cell Biology, Medical and Health Science Center, Research Center for Molecular Medicine, University of Debrecen, Hungary.
Biochim Biophys Acta. 2005 Jun 30;1744(2):176-98. doi: 10.1016/j.bbamcr.2005.02.002. Epub 2005 Mar 2.
Fluorescence energy homotransfer offers a powerful tool for the investigation of the state of oligomerization of cell surface receptors on a cell-by-cell basis by measuring the polarized components of fluorescence intensity of cells labeled with fluorescently stained antibodies. Here we describe homotransfer-based methods for the flow cytometric detection and analysis of hetero- and homo-associations of cell surface receptors. Homotransfer efficiencies for two- and three-body energy transfer interactions are defined and their frequency distribution curves are computed from the fluorescence anisotropy distributions of multiple-labeled cells. The fractions of receptors involved in homo-clustering is calculated based on the dependence of the fluorescence anisotropy on the surface concentration of the fluorescently stained antibodies. A homotransfer analysis of the homo- and hetero-clustering of the MHCI and MHCII glycoproteins, the cytokine receptor IL-2Ralpha, transferrin receptor and the receptor-type tyrosine phosphatase CD45 on JY B and Kit-225-K6 T cells is presented. We investigated how various factors such as the type of dye, rotational mobility of the dye and dye-targeting antibody, as well as the wavelength of the exciting light affect the homotransfer. We show that the homotransfer technique combined with the high statistical resolution of flow cytometry is an effective tool for detecting different oligomeric states of receptors by using fluorophores having restricted rotational mobility on the time scale of fluorescence.
荧光能量同转移提供了一种强大的工具,可通过测量用荧光染色抗体标记的细胞的荧光强度的偏振分量,在逐个细胞的基础上研究细胞表面受体的寡聚化状态。在此,我们描述了基于同转移的方法,用于流式细胞术检测和分析细胞表面受体的异源和同源缔合。定义了二体和三体能量转移相互作用的同转移效率,并根据多标记细胞的荧光各向异性分布计算其频率分布曲线。基于荧光各向异性对荧光染色抗体表面浓度的依赖性,计算参与同源聚集的受体比例。本文展示了对JY B细胞和Kit-225-K6 T细胞上的MHC I和MHC II糖蛋白、细胞因子受体IL-2Rα、转铁蛋白受体以及受体型酪氨酸磷酸酶CD45的同源和异源聚集的同转移分析。我们研究了诸如染料类型(原文有误,应为dye type)、染料和染料靶向抗体的旋转流动性以及激发光波长等各种因素如何影响同转移。我们表明,同转移技术与流式细胞术的高统计分辨率相结合,是通过使用在荧光时间尺度上具有受限旋转流动性的荧光团来检测受体不同寡聚状态的有效工具。