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1000 Titel
  • Raising cytosolic Cl− in cerebellar granule cells affects their excitability and vestibulo-ocular learning
1000 Autor/in
  1. Seja, Patricia |
  2. Schonewille, Martijn |
  3. Spitzmaul, Guillermo |
  4. Badura, Aleksandra |
  5. Klein, Ilse |
  6. Rudhard, York |
  7. Wisden, William |
  8. Hübner, Christian A. |
  9. De Zeeuw, Chris I. |
  10. Jentsch, Thomas |
1000 Erscheinungsjahr 2012
1000 LeibnizOpen
1000 Publikationstyp
  1. Artikel |
1000 Online veröffentlicht
  • 2012-01-17
1000 Erschienen in
1000 Quellenangabe
  • 31(5): 1217–1230
1000 FRL-Sammlung
1000 Verlagsversion
  • https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3297995/ |
  • http://dx.doi.org/10.1038/emboj.2011.488 |
1000 Ergänzendes Material
  • http://emboj.embopress.org/content/31/5/1217#sec-26 |
1000 Publikationsstatus
1000 Begutachtungsstatus
1000 Sprache der Publikation
1000 Abstract/Summary
  • Cerebellar cortical throughput involved in motor control comprises granule cells (GCs) and Purkinje cells (PCs), both of which receive inhibitory GABAergic input from interneurons. The GABAergic input to PCs is essential for learning and consolidation of the vestibulo‐ocular reflex, but the role of GC excitability remains unclear. We now disrupted the Kcc2 K‐Cl cotransporter specifically in either cell type to manipulate their excitability and inhibition by GABAA‐receptor Cl− channels. Although Kcc2 may have a morphogenic role in synapse development, Kcc2 disruption neither changed synapse density nor spine morphology. In both GCs and PCs, disruption of Kcc2, but not Kcc3, increased [Cl−]i roughly two‐fold. The reduced Cl− gradient nearly abolished GABA‐induced hyperpolarization in PCs, but in GCs it merely affected excitability by membrane depolarization. Ablation of Kcc2 from GCs impaired consolidation of long‐term phase learning of the vestibulo‐ocular reflex, whereas baseline performance, short‐term gain‐decrease learning and gain consolidation remained intact. These functions, however, were affected by disruption of Kcc2 in PCs. GC excitability plays a previously unknown, but specific role in consolidation of phase learning.
1000 Sacherschließung
lokal glycine receptor
lokal potassium-chloride cotransporter
lokal synaptic inhibition
lokal dendritic spine
lokal GABA switch
1000 Fachgruppe
  1. Medizin |
1000 Fächerklassifikation (DDC)
1000 Liste der Beteiligten
  1. https://frl.publisso.de/adhoc/creator/U2VqYSwgUGF0cmljaWE=|https://frl.publisso.de/adhoc/creator/U2Nob25ld2lsbGUsIE1hcnRpam4=|https://frl.publisso.de/adhoc/creator/U3BpdHptYXVsLCBHdWlsbGVybW8=|https://frl.publisso.de/adhoc/creator/QmFkdXJhLCBBbGVrc2FuZHJh|https://frl.publisso.de/adhoc/creator/S2xlaW4sIElsc2U=|https://frl.publisso.de/adhoc/creator/UnVkaGFyZCwgWW9yaw==|https://frl.publisso.de/adhoc/creator/V2lzZGVuLCBXaWxsaWFt|https://frl.publisso.de/adhoc/creator/SMO8Ym5lciwgQ2hyaXN0aWFuIEEu|https://frl.publisso.de/adhoc/creator/RGUgWmVldXcsIENocmlzIEku|http://orcid.org/0000-0002-3509-2553
1000 Label
1000 Förderer
  1. Deutsche Forschungsgemeinschaft (DFG)
  2. Prix Louis-Jeantet de Médecine
  3. Alexander von Humboldt Foundation
  4. Dutch Organization for Medical Sciences
  5. Dutch Organization for Life Sciences
  6. Erasmus University Rotterdam Fellowship
  7. Senter (Neuro-Bsik)
  8. Prinses Beatrix Fonds
  9. European Community
1000 Fördernummer
  1. JE 164/8; Exc 257 NeuroCure; HU 800/5-1
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1000 Förderprogramm
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  9. SENSOPAC, CEREBNET; C7 programs
1000 Objektart article
1000 Beschrieben durch
1000 @id frl:6406490.rdf
1000 Erstellt am 2018-01-25T15:16:21.880+0100
1000 Erstellt von 22
1000 beschreibt frl:6406490
1000 Bearbeitet von 218
1000 Zuletzt bearbeitet Thu Jan 30 16:25:40 CET 2020
1000 Objekt bearb. Wed Aug 01 12:40:29 CEST 2018
1000 Vgl. frl:6406490
1000 Oai Id
  1. oai:frl.publisso.de:frl:6406490 |
1000 Sichtbarkeit Metadaten public
1000 Sichtbarkeit Daten public
1000 Gegenstand von

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