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GABAergic Innervation Organizes Synaptic and Extrasynaptic GABAA Receptor Clustering in Cultured Hippocampal Neurons

机译:GABA能神经组织在培养的海马神经元中组织突触和突触外GABA A受体簇。

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摘要

We have studied the effects of GABAergic innervation on the clustering of GABAA receptors (GABAARs) in cultured hippocampal neurons. In the absence of GABAergic innervation, pyramidal cells form small (0.36 ± 0.01 μm diameter) GABAAR clusters at their surface in the dendrites and soma. When receiving GABAergic innervation from glutamic acid decarboxylase-containing interneurons, pyramidal cells form large (1.62 ± 0.08 μm breadth) GABAAR clusters at GABAergic synapses. This is accompanied by a disappearance of the small GABAAR clusters in the local area surrounding each GABAergic synapse. Although the large synaptic GABAAR clusters of any neuron contained all GABAAR subunits and isoforms expressed by that neuron, the small clusters not localized at GABAergic synapses showed significant heterogeneity in subunit and isoform composition. Another difference between large GABAergic and small non-GABAergic GABAAR clusters was that a significant proportion of the latter was juxtaposed to postsynaptic markers of glutamatergic synapses such as PSD-95 and AMPA receptor GluR1 subunit. The densities of both the glutamate receptor-associated and non-associated small GABAAR clusters were decreased in areas surrounding GABAergic synapses. However, no effect on the density or distribution of glutamate receptor clusters was observed. The results suggest that there are local signals generated at GABAergic synapses that induce both assembly of large synaptic GABAAR clusters at the synapse and disappearance of the small GABAAR clusters in the surrounding area. In the absence of GABAergic innervation, weaker GABAAR-clustering signals, generated at glutamatergic synapses, induce the formation of small postsynaptic GABAAR clusters that remain juxtaposed to glutamate receptors at glutamatergic synapses.
机译:我们已经研究了GABA能神经支配对培养的海马神经元中GABAA受体(GABAARs)聚集的影响。在没有GABA能神经支配的情况下,锥体细胞在树突和躯体中的表面形成小的GABAAR簇(直径为0.36±0.01μm)。当从含谷氨酸脱羧酶的中间神经元接受GABA能神经支配时,锥体细胞会在GABA能突触处形成较大的(1.62±0.08μm宽度)GABAAR簇。这伴随着每个GABA能突触周围的小GABAAR簇的消失。尽管任何神经元的大型突触GABAAR簇均包含该神经元表达的所有GABAAR亚基和同工型,但未定位于GABA能突触的小簇在亚基和同工型组成中表现出明显的异质性。大的GABA能和小的非GABA能的GABAAR簇之间的另一个区别是,后者中的很大一部分与谷氨酸能突触的突触后标记(例如PSD-95和AMPA受体GluR1亚基)并列。谷氨酸受体相关和非相关的小GABAAR小簇的密度在GABA能突触周围区域均降低。然而,未观察到对谷氨酸受体簇的密度或分布的影响。结果表明,在GABA能突触处产生了局部信号,既诱导突触处的大突触GABAAR簇装配,又引起周围区域的小GABAAR簇消失。在没有GABA能神经支配的情况下,在谷氨酸能突触处产生的较弱的GABAAR簇信号会诱导形成小的突触后GABAAR簇,这些簇仍与谷氨酸能突触的谷氨酸受体并列。

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