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Single Particle Tracking of α7 Nicotinic AChR in Hippocampal Neurons Reveals Regulated Confinement at Glutamatergic and GABAergic Perisynaptic Sites

机译:海马神经元中α7烟碱型AChR的单粒子跟踪揭示了谷氨酸能和GABA能的突触位点的调节限制。

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α7 neuronal nicotinic acetylcholine receptors (α7-nAChR) form Ca2+-permeable homopentameric channels modulating cortical network activity and cognitive processing. They are located pre- and postsynaptically and are highly abundant in hippocampal GABAergic interneurons. It is unclear how α7-nAChRs are positioned in specific membrane microdomains, particularly in cultured neurons which are devoid of cholinergic synapses. To address this issue, we monitored by single particle tracking the lateral mobility of individual α7-nAChRs labeled with α-bungarotoxin linked to quantum dots in live rat cultured hippocampal interneurons. Quantitative analysis revealed different modes of lateral diffusion of α7-nAChR dependent on their subcellular localization. Confined receptors were found in the immediate vicinity of glutamatergic and GABAergic postsynaptic densities, as well as in extrasynaptic clusters of α-bungarotoxin labeling on dendrites. α7-nAChRs avoided entering postsynaptic densities, but exhibited reduced mobility and long dwell times at perisynaptic locations, indicative of regulated confinement. Their diffusion coefficient was lower, on average, at glutamatergic than at GABAergic perisynaptic sites, suggesting differential, synapse-specific tethering mechanisms. Disruption of the cytoskeleton affected α7-nAChR mobility and cell surface expression, but not their ability to form clusters. Finally, using tetrodotoxin to silence network activity, as well as exposure to a selective α7-nAChR agonist or antagonist, we observed that α7-nAChRs cell surface dynamics is modulated by chronic changes in neuronal activity. Altogether, given their high Ca2+-permeability, our results suggest a possible role of α7-nAChR on interneurons for activating Ca2+-dependent signaling in the vicinity of GABAergic and glutamatergic synapses.
机译:α7神经元烟碱乙酰胆碱受体(α7-nAChR)形成可透过Ca2 +的同五聚体通道,调节皮质网络活动和认知过程。它们位于突触前和突触后,在海马GABA能中神经元中含量很高。尚不清楚α7-nAChRs如何定位在特定的膜微区中,尤其是在缺乏胆碱能突触的培养神经元中。为了解决这个问题,我们通过单颗粒跟踪在活大鼠培养的海马interneurons中单个α7-nAChRs的横向迁移率进行了监测,这些α7-nAChRs标记有与量子点相连的α-真菌毒素。定量分析表明,α7-nAChR的不同横向扩散模式取决于其亚细胞定位。在谷氨酸能和GABA能突触后密度的紧邻区域以及树突上标记的α-真菌毒素的突触外簇中发现了受限的受体。 α7-nAChRs避免进入突触后密度,但在突触周围位置表现出降低的活动性和较长的停留时间,这表明调节受限。平均而言,它们在谷氨酸能的扩散系数要比在GABA能突触周围的地点低,这表明差异的,突触特异性的束缚机制。细胞骨架的破坏影响α7-nAChR的迁移率和细胞表面表达,但不影响其形成簇的能力。最后,使用河豚毒素来沉默网络活动,以及暴露于选择性的α7-nAChR激动剂或拮抗剂,我们观察到α7-nAChRs的细胞表面动力学受到神经元活性的慢性变化的调节。总之,鉴于它们的高Ca2 +渗透性,我们的结果表明α7-nAChR在中间神经元上可能会激活GABA能和谷氨酸能突触附近的Ca2 +依赖性信号传导。

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