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An astrocytic signaling loop for frequency-dependent control of dendritic integration and spatial learning.
Bohmbach, Kirsten; Masala, Nicola; Schönhense, Eva M; Hill, Katharina; Haubrich, André N; Zimmer, Andreas; Opitz, Thoralf; Beck, Heinz; Henneberger, Christian.
Affiliation
  • Bohmbach K; Institute of Cellular Neurosciences, Medical Faculty, University of Bonn, Bonn, Germany.
  • Masala N; Institute of Experimental Epileptology and Cognition Research, Medical Faculty, University of Bonn, Bonn, Germany.
  • Schönhense EM; Institute of Cellular Neurosciences, Medical Faculty, University of Bonn, Bonn, Germany.
  • Hill K; Institute of Cellular Neurosciences, Medical Faculty, University of Bonn, Bonn, Germany.
  • Haubrich AN; Institute of Experimental Epileptology and Cognition Research, Medical Faculty, University of Bonn, Bonn, Germany.
  • Zimmer A; Institute of Molecular Psychiatry, Medical Faculty, University of Bonn, Bonn, Germany.
  • Opitz T; Institute of Experimental Epileptology and Cognition Research, Medical Faculty, University of Bonn, Bonn, Germany.
  • Beck H; Institute of Experimental Epileptology and Cognition Research, Medical Faculty, University of Bonn, Bonn, Germany.
  • Henneberger C; German Center for Neurodegenerative Diseases (DZNE), Bonn, Germany.
Nat Commun ; 13(1): 7932, 2022 12 24.
Article in En | MEDLINE | ID: mdl-36566254
ABSTRACT
Dendrites of hippocampal CA1 pyramidal cells amplify clustered glutamatergic input by activation of voltage-gated sodium channels and N-methyl-D-aspartate receptors (NMDARs). NMDAR activity depends on the presence of NMDAR co-agonists such as D-serine, but how co-agonists influence dendritic integration is not well understood. Using combinations of whole-cell patch clamp, iontophoretic glutamate application, two-photon excitation fluorescence microscopy and glutamate uncaging in acute rat and mouse brain slices we found that exogenous D-serine reduced the threshold of dendritic spikes and increased their amplitude. Triggering an astrocytic mechanism controlling endogenous D-serine supply via endocannabinoid receptors (CBRs) also increased dendritic spiking. Unexpectedly, this pathway was activated by pyramidal cell activity primarily in the theta range, which required HCN channels and astrocytic CB1Rs. Therefore, astrocytes close a positive and frequency-dependent feedback loop between pyramidal cell activity and their integration of dendritic input. Its disruption in mice led to an impairment of spatial memory, which demonstrated its behavioral relevance.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Astrocytes / Dendrites / CA1 Region, Hippocampal / Spatial Learning Limits: Animals Language: En Journal: Nat Commun Journal subject: BIOLOGIA / CIENCIA Year: 2022 Document type: Article Affiliation country: Germany

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Astrocytes / Dendrites / CA1 Region, Hippocampal / Spatial Learning Limits: Animals Language: En Journal: Nat Commun Journal subject: BIOLOGIA / CIENCIA Year: 2022 Document type: Article Affiliation country: Germany