4.7 Article

Synaptic activation of kainate receptors gates presynaptic CB1 signaling at GABAergic synapses

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NATURE NEUROSCIENCE
卷 13, 期 2, 页码 197-U81

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NATURE PUBLISHING GROUP
DOI: 10.1038/nn.2481

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  1. Institut National de la Sante et de la Recherche Medicale (INSERM)
  2. Agence National de la Recherche [ANR-06-NEUR-043-01, ANR-05-NEUR-033-01]
  3. Conseil Regional d'Aquitaine
  4. Fundacao para a Ciencia e a Tecnologia, Portugal
  5. Centre National de la Recherche Scientifique
  6. European Commission Coordination Action Network of European Neuroscience Institutes (ENINET) [LSHM-CT-2005-19063]

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Glutamate can control inhibitory synaptic transmission through activation of presynaptic kainate receptors. We found that glutamate released by train stimulation of Schaffer collaterals could lead to either short-term depression or short-term facilitation of inhibitory synaptic transmission in mouse CA1 pyramidal neurons, depending on the presence of cannabinoid type 1 (CB1) receptors on GABAergic afferents. The train-induced depression of inhibition (t-Di) required the mobilization of 2-arachidonoylglycerol through postsynaptic activation of metabotropic glutamate receptors and [Ca2+] rise. GluK1 (GluR5)-dependent depolarization of GABAergic terminals enabled t-Di by facilitating presynaptic CB1 signaling. Thus, concerted activation of presynaptic CB1 receptors and kainate receptors mediates short-term depression of inhibitory synaptic transmission. In contrast, in inhibitory connections expressing GluK1, but not CB1, receptors, train stimulation of Schaffer collaterals led to short-term facilitation. Thus, activation of kainate receptors by synaptically released glutamate gates presynaptic CB1 signaling, which in turn controls the direction of short-term heterosynaptic plasticity.

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