Fluorescence lifetime imaging of AMPA receptor endocytosis in living neurons: effects of Aβ and PP1

Katie Prinkey, Emily Thompson, Junmi M. Saikia, Tania Cid, Kim Dore
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Abstract

The relative amount of AMPA receptors expressed at the surface of neurons can be measured using superecliptic pHluorin (SEP) labeling at their N-terminus. However, the high signal variability resulting from protein overexpression in neurons and the low signal observed in intracellular vesicles make quantitative characterization of receptor trafficking difficult. Here, we establish a real-time live-cell assay of AMPAR trafficking based on fluorescence lifetime imaging (FLIM), which allows for simultaneous visualization of both surface and intracellular receptors. Using this assay, we found that elevating amyloid-beta (Aβ) levels leads to a strong increase in intracellular GluA1 and GluA2-containing receptors, indicating that Aβ triggers the endocytosis of these AMPARs. In APP/PS1 Alzheimer's disease model mouse neurons, FLIM revealed strikingly different AMPAR trafficking properties for GluA1- and GluA3-containing receptors, suggesting that chronic Aβ exposure triggered the loss of both surface and intracellular GluA3-containing receptors. Interestingly, overexpression of protein phosphatase 1 (PP1) also resulted in GluA1 endocytosis as well as depressed synaptic transmission, confirming the important role of phosphorylation in regulating AMPAR trafficking. This new approach allows for the quantitative measurement of extracellular pH, small changes in receptor trafficking, as well as simultaneous measurement of surface and internalized AMPARs in living neurons, and could therefore be applied to several different studies in the future.
活体神经元中 AMPA 受体内吞的荧光寿命成像:Aβ 和 PP1 的影响
神经元表面表达的 AMPA 受体的相对数量可通过在其 N 端进行黄道上 pHluorin(SEP)标记来测量。然而,神经元中蛋白质过量表达导致的高信号变异性以及在细胞内囊泡中观察到的低信号使受体贩运的定量表征变得困难。在这里,我们建立了一种基于荧光寿命成像(FLIM)的 AMPAR 转运实时活细胞检测方法,它可以同时观察细胞表面和细胞内的受体。利用这种检测方法,我们发现淀粉样蛋白-β(Aβ)水平的升高会导致细胞内含GluA1和GluA2的受体大量增加,这表明Aβ会触发这些AMPAR的内吞。在 APP/PS1 阿尔茨海默病模型小鼠神经元中,FLIM 发现含 GluA1 和 GluA3 受体的 AMPAR 转运特性显著不同,这表明长期 Aβ 暴露会引发细胞表面和细胞内含 GluA3 受体的丢失。有趣的是,过量表达蛋白磷酸酶1(PP1)也会导致GluA1内吞以及突触传递抑制,这证实了磷酸化在调节AMPAR贩运中的重要作用。这种新方法可以定量测量细胞外pH值、受体贩运的微小变化以及同时测量活体神经元的表面和内化AMPAR,因此将来可以应用于多种不同的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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