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Real-Time Imaging of Discrete Exocytic Events Mediating Surface Delivery of AMPA Receptors

机译:离散胞外事件的实时成像介导AMPA受体的表面递送

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摘要

We directly resolved discrete exocytic fusion events mediating insertion of AMPA-type glutamate receptors (AMPARs) to the somatodendritic surface of rat hippocampal pyramidal neurons, in slice and dissociated cultures, using protein tagging with a pH-sensitive GFP (green fluorescent protein) variant and rapid (10 frames/s) fluorescence microscopy. AMPAR-containing exocytic events occurred under basal culture conditions in both the cell body and dendrites; potentiating chemical stimuli produced an NMDA receptor-dependent increase in the frequency of individual exocytic events. The number of AMPARs inserted per exocytic event, estimated using single-molecule analysis, was quite uniform but individual events differed significantly in kinetic properties affecting the subsequent surface distribution of receptors. “Transient” events, from which AMPARs dispersed laterally immediately after surface insertion, generated a pronounced but short-lived (dissipating within ∼1 s) increase in surface AMPAR fluorescence extending locally (2–5 μm) from the site of exocytosis. “Persistent” events, from which inserted AMPARs dispersed slowly (typically over 5–10 s), affected local surface receptor concentration to a much smaller degree. Both modes of exocytic insertion occurred throughout the dendritic shaft, but remarkably, neither mode of insertion was observed directly into synaptic spines. AMPARs entered spines preferentially from transient events occurring in the adjoining dendritic shaft, driven apparently by mass action and short-range lateral diffusion, and locally delivered AMPARs remained mostly in the mobile fraction. These results suggest a highly dynamic mechanism for both constitutive and activity-dependent surface delivery of AMPARs, mediated by kinetically distinct exocytic modes that differ in propensity to drive lateral entry of receptors to nearby synapses.
机译:我们使用带有pH敏感的GFP(绿色荧光蛋白)变体的蛋白标签和快速(10帧/秒)荧光显微镜检查。在基础培养条件下,在细胞体和树突中都发生了含AMPAR的胞外事件。增强性化学刺激在个体胞外事件的发生频率上产生了NMDA受体依赖性的增加。使用单分子分析估计的每个胞外事件插入的AMPAR数量非常均匀,但各个事件的动力学特性差异显着,影响受体的后续表面分布。 AMPARs在表面插入后立即从侧面“分散”的事件引起了明显的但短暂的(约1 s内消散)了从胞吐部位局部(2-5μm)延伸的AMPAR荧光。插入的AMPAR缓慢散布(通常超过5-10 s)的“持久”事件,对局部表面受体的浓度影响较小。两种胞外插入方式都发生在整个树突干中,但值得注意的是,两种插入方式均未直接观察到突触棘中。 AMPAR优先从相邻树突状轴中发生的瞬态事件进入棘突,这显然是受质量作用和短程横向扩散的驱动,而局部递送的AMPAR主要保留在活动部分中。这些结果表明,由动力学上不同的胞外模式介导的AMPAR的组成型和活性依赖性表面递送的高度动态机制,所述胞外动力学模式驱动受体横向进入邻近突触的倾向不同。

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