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荧光蛋白标记可视化 GABA A 受体转运动态。

Visualizing GABA A Receptor Trafficking Dynamics with Fluorogenic Protein Labeling.

机构信息

Department of Pharmacology and Chemical Biology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania.

出版信息

Curr Protoc Neurosci. 2020 Jun;92(1):e97. doi: 10.1002/cpns.97.

Abstract

It is increasingly evident that neurotransmitter receptors, including ionotropic GABA A receptors (GABAARs), exhibit highly dynamic trafficking and cell surface mobility. Regulated trafficking to and from the surface is a critical determinant of GABAAR neurotransmission. Receptors delivered by exocytosis diffuse laterally in the plasma membrane, with tethering and reduced movement at synapses occurring through receptor interactions with the subsynaptic scaffold. After diffusion away from synapses, receptors are internalized by clathrin-dependent endocytosis at extrasynaptic sites and can be either recycled back to the cell membrane or degraded in lysosomes. To study the dynamics of these key trafficking events in neurons, we have developed novel optical methods based around receptors containing a dual-tagged γ2 subunit (γ2pHFAP) in combination with fluorogen dyes. Specifically, the GABAAR γ2 subunit is tagged with a pH-sensitive green fluorescent protein and a fluorogen-activating peptide (FAP). The FAP allows receptor labeling with fluorogen dyes that are optically silent until bound to the FAP. Combining FAP and fluorescent imaging with organelle labeling allows novel and accurate measurement of receptor turnover and accumulation into intracellular compartments under basal conditions in scenarios ranging from in vitro seizure models to drug exposure paradigms. Here we provide a protocol to track and quantify receptors in transit from the neuronal surface to endosomes and lysosomes. This protocol is readily applicable to cell lines and primary cells, allowing rapid quantitative measurements of receptor surface levels and postendocytic trafficking decisions. © 2020 by John Wiley & Sons, Inc. Basic Protocol 1: Preparation of cortical neuronal cultures for imaging assays Basic Protocol 2: Surface receptor internalization and trafficking to early endosomes Basic Protocol 3: Measurement of receptor steady state surface level, synaptic level, and lysosomal targeting.

摘要

越来越明显的是,神经递质受体,包括离子型 GABA A 受体(GABAAR),表现出高度动态的运输和细胞表面流动性。从表面到表面的调节运输是 GABAAR 神经传递的关键决定因素。通过胞吐作用递送至表面的受体在质膜中横向扩散,通过与突触下支架的受体相互作用,在突触处发生固定和运动减少。从突触扩散后,受体通过网格蛋白依赖性胞吞作用在突触外位点被内化,并且可以被再循环回到质膜或在溶酶体中降解。为了研究神经元中这些关键运输事件的动力学,我们开发了基于含有双标记 γ2 亚基(γ2pHFAP)的受体的新型光学方法,结合荧光染料。具体来说,GABAAR γ2 亚基被标记有 pH 敏感的绿色荧光蛋白和荧光基团激活肽(FAP)。FAP 允许用荧光团染料标记受体,这些受体在与 FAP 结合之前是光学上沉默的。将 FAP 和荧光成像与细胞器标记相结合,允许在从体外癫痫模型到药物暴露范式的各种情况下,在基础条件下对受体周转和积累到细胞内隔室进行新颖且准确的测量。在此,我们提供了一种从神经元表面追踪和量化受体到内体和溶酶体的方法。该方案易于应用于细胞系和原代细胞,允许快速定量测量受体表面水平和胞吞后运输决策。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0a5/7556711/e0f3071a2bbf/nihms-1591422-f0001.jpg

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