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Confocal FRET Microscopy to Measure Clustering of Ligand-Receptor Complexes in Endocytic Membranes

机译:共聚焦FRET显微镜可测量内吞膜中配体-受体复合物的聚集

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摘要

The dynamics of protein distribution in endocytic membranes are relevant for many cellular processes, such as protein sorting, organelle and membrane microdomain biogenesis, protein-protein interactions, receptor function, and signal transduction. We have developed an assay based on Fluorescence Resonance Energy Microscopy (FRET) and novel mathematical models to differentiate between clustered and random distributions of fluorophore-bound molecules on the basis of the dependence of FRET intensity on donor and acceptor concentrations. The models are tailored to extended clusters, which may be tightly packed, and account for geometric exclusion effects between membrane-bound proteins. Two main criteria are used to show that labeled polymeric IgA-ligand-receptor complexes are organized in clusters within apical endocytic membranes of polarized MDCK cells: 1), energy transfer efficiency (E%) levels are independent of acceptor levels; and 2), with increasing unquenched donor: acceptor ratio, E% decreases. A quantitative analysis of cluster density indicates that a donor-labeled ligand-receptor complex should have 2.5–3 labeled complexes in its immediate neighborhood and that clustering may occur at a limited number of discrete membrane locations and/or require a specific protein that can be saturated. Here, we present a new sensitive FRET-based method to quantify the co-localization and distribution of ligand-receptor complexes in apical endocytic membranes of polarized cells.
机译:内吞膜中蛋白质分布的动力学与许多细胞过程有关,例如蛋白质分选,细胞器和膜微域生物发生,蛋白质-蛋白质相互作用,受体功能和信号转导。我们已经开发了一种基于荧光共振能量显微镜(FRET)和新型数学模型的测定方法,可以根据FRET强度对供体和受体浓度的依赖性来区分荧光团结合分子的簇状分布和随机分布。该模型针对扩展的簇(可能紧密堆积)进行了定制,并考虑了膜结合蛋白之间的几何排斥效应。有两个主要标准可用来证明标记的聚合IgA-配体-受体复合物在极化MDCK细胞的顶端内吞膜内呈簇状组织:1)能量转移效率(E%)水平与受体水平无关;和2),随着未淬灭的供体:受主比例的增加,E%降低。簇密度的定量分析表明,供体标记的配体-受体复合物应在其紧邻区域具有2.5–3个标记的复合物,并且聚簇可能发生在有限数量的离散膜位置和/或需要特定的蛋白质饱和的。在这里,我们提出了一种新的基于FRET的灵敏方法,用于量化极化细胞的顶端内吞膜中配体-受体复合物的共定位和分布。

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