Synaptic Transmission from Somatostatin-expressing Interneurons to Excitatory Neurons Mediated by α5-subunit-containing GABAA Receptors in the Developing Visual Cortex
Autor: | Yinghui Fu, Wuqiang Guan, Yong-Chun Yu, Jun-Wei Cao |
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Rok vydání: | 2020 |
Předmět: |
0301 basic medicine
endocrine system Neocortex GABAA receptor Chemistry General Neuroscience Neurotransmission Inhibitory postsynaptic potential 03 medical and health sciences 030104 developmental biology 0302 clinical medicine medicine.anatomical_structure Visual cortex Postsynaptic potential Synaptic plasticity medicine Excitatory postsynaptic potential Neuroscience hormones hormone substitutes and hormone antagonists 030217 neurology & neurosurgery |
Zdroj: | Neuroscience. 449:147-156 |
ISSN: | 0306-4522 |
DOI: | 10.1016/j.neuroscience.2020.09.008 |
Popis: | Dendrite-targeting somatostatin-expressing interneurons (SST-INs) powerfully control signal integration and synaptic plasticity in pyramidal dendrites during cortical development. We previously showed that synaptic transmission from SST-INs to pyramidal cells (PCs) (SST-IN → PC) in the mouse visual cortex suddenly declined at around the second postnatal week. However, it is unclear what specific postsynaptic mechanisms underlie this developmental change. Using multiple whole-cell patch-clamp recordings, we found that application of an α5-GABAA receptor-selective inverse agonist, alpha5IA, significantly weakened SST-IN → PC unitary inhibitory postsynaptic currents (uIPSCs) in layer 2/3 of the mouse visual cortex, but had no effect on uIPSCs from SST-INs to other types of interneurons. The extent of alpha5IA-induced reduction of SST-IN → PC synaptic transmission was significantly larger at postnatal days 11–13 (P11–13) than P14–17. Moreover, α5-subunit-containing GABAA receptors (α5-GABAARs)-mediated uIPSCs had slow rise and decay kinetics. Apart from pharmacological test, we observed that SST-IN → PC synapses did indeed contain α5-GABAARs by immunogold labeling for electron microscopy. More importantly, coinciding with the weakening of SST-IN → PC synaptic transmission, the number of α5-GABAAR particles in SST-IN → PC synapses significantly decreased at around the second postnatal week. Together, these data indicate that α5-GABAARs are involved in synaptic transmission from SST-INs to PCs in the neocortex, and are significantly diminished around the second postnatal week. |
Databáze: | OpenAIRE |
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