4.6 Article

Afferent-specific properties of interneuron synapses underlie selective long-term regulation of feedback inhibitory circuits in CA1 hippocampus

Journal

JOURNAL OF PHYSIOLOGY-LONDON
Volume 588, Issue 12, Pages 2091-2107

Publisher

WILEY-BLACKWELL
DOI: 10.1113/jphysiol.2010.189316

Keywords

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Funding

  1. Canadian Institutes of Health Research [MOP-10848]
  2. Fonds de la Recherche en Sante du Quebec (GRSNC)
  3. Canada Research Chair in Cellular and Molecular Neurophysiology
  4. Groupe de Recherche sur le Systeme Nerveux Central (GRSNC)
  5. FRSQ

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Hebbian long-term potentiation (LTP) develops at specific synapses onto hippocampal CA1 oriens/alveus interneurons (OA-INs), suggesting selective regulation of distinct input pathways. Afferent-specific properties at interneuron synapses have been characterized extensively in CA3 stratum lucidum cells, but given interneuron diversity these rules of transmission and plasticity may not hold in other interneuron types. Here, we used paired recordings and demonstrate that CA2/3 pyramidal cell (PC) feedforward and CA1 PC feedback synapses onto OA-INs show distinct AMPA receptor rectification and Ca2+ permeability, short-term plasticity and mGluR2/3-mediated inhibition. Only feedback synapses undergo Hebbian LTP. OA-IN firing during repeated synaptic stimulation displays onset-transient or late-persistent responses consistent with activation of feedforward and feedback inputs, respectively. Input-output functions are preserved after theta-burst stimulation, but late-persistent responses selectively show mGluR1-dependent long-term increases. Thus, cell type- and afferent-specific rules of transmission and plasticity underlie distinct OA-IN input-output functions, providing selective long-term regulation in feedback inhibitory networks.

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