Literature DB >> 12451117

Small conductance Ca2+-activated K+ channels modulate synaptic plasticity and memory encoding.

Robert W Stackman1, Rebecca S Hammond, Eftihia Linardatos, Aaron Gerlach, James Maylie, John P Adelman, Thanos Tzounopoulos.   

Abstract

Activity-dependent changes in neuronal excitability and synaptic strength are thought to underlie memory encoding. In hippocampal CA1 neurons, small conductance Ca2+-activated K+ (SK) channels contribute to the afterhyperpolarization, affecting neuronal excitability. In the present study, we examined the effect of apamin-sensitive SK channels on the induction of hippocampal synaptic plasticity in response to a range of stimulation frequencies. In addition, the role of apamin-sensitive SK channels on hippocampal-dependent memory encoding and retention was also tested. The results show that blocking SK channels with apamin increased the excitability of hippocampal neurons and facilitated the induction of synaptic plasticity by shifting the modification threshold to lower frequencies. This facilitation was NMDA receptor (NMDAR) dependent and appeared to be postsynaptic. Mice treated with apamin demonstrated accelerated hippocampal-dependent spatial and nonspatial memory encoding. They required fewer trials to learn the location of a hidden platform in the Morris water maze and less time to encode object memory in an object-recognition task compared with saline-treated mice. Apamin did not influence long-term retention of spatial or nonspatial memory. These data support a role for SK channels in the modulation of hippocampal synaptic plasticity and hippocampal-dependent memory encoding.

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Year:  2002        PMID: 12451117      PMCID: PMC6758766     

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  124 in total

1.  Developmental profile of SK2 channel expression and function in CA1 neurons.

Authors:  Carmen Ballesteros-Merino; Mike Lin; Wendy W Wu; Clotilde Ferrandiz-Huertas; María J Cabañero; Masahiko Watanabe; Yugo Fukazawa; Ryuichi Shigemoto; James Maylie; John P Adelman; Rafael Luján
Journal:  Hippocampus       Date:  2011-11-10       Impact factor: 3.899

Review 2.  Small conductance Ca2+-activated K+ channels and calmodulin.

Authors:  James Maylie; Chris T Bond; Paco S Herson; Wei-Sheng Lee; John P Adelman
Journal:  J Physiol       Date:  2003-09-18       Impact factor: 5.182

3.  SK channels modulate the excitability and firing precision of projection neurons in the robust nucleus of the arcopallium in adult male zebra finches.

Authors:  Guo-Qiang Hou; Xuan Pan; Cong-Shu Liao; Song-Hua Wang; Dong-Feng Li
Journal:  Neurosci Bull       Date:  2012-06       Impact factor: 5.203

4.  Stimulation of serotonin 2A receptors facilitates consolidation and extinction of fear memory in C57BL/6J mice.

Authors:  Gongliang Zhang; Herborg N Ásgeirsdóttir; Sarah J Cohen; Alcira H Munchow; Mercy P Barrera; Robert W Stackman
Journal:  Neuropharmacology       Date:  2012-06-18       Impact factor: 5.250

5.  Acute stress facilitates trace eyeblink conditioning in C57BL/6 male mice and increases the excitability of their CA1 pyramidal neurons.

Authors:  Craig Weiss; Evgeny Sametsky; Astrid Sasse; Joachim Spiess; John F Disterhoft
Journal:  Learn Mem       Date:  2005 Mar-Apr       Impact factor: 2.460

6.  Metaplastic effect of apamin on LTP and paired-pulse facilitation.

Authors:  Laurence Ris; Brigitte Capron; Coralie Sclavons; Jean-François Liégeois; Vincent Seutin; Emile Godaux
Journal:  Learn Mem       Date:  2007-06-05       Impact factor: 2.460

7.  Deletion of the L-type calcium channel Ca(V) 1.3 but not Ca(V) 1.2 results in a diminished sAHP in mouse CA1 pyramidal neurons.

Authors:  Amy E Gamelli; Brandon C McKinney; Jessica A White; Geoffrey G Murphy
Journal:  Hippocampus       Date:  2011-02       Impact factor: 3.899

Review 8.  Ca2+ and mitochondria as substrates for deficits in synaptic plasticity in normal brain ageing.

Authors:  E C Toescu; A Verkhratsky
Journal:  J Cell Mol Med       Date:  2004 Apr-Jun       Impact factor: 5.310

9.  Contextual memory deficits observed in mice overexpressing small conductance Ca2+-activated K+ type 2 (KCa2.2, SK2) channels are caused by an encoding deficit.

Authors:  Robert W Stackman; Chris T Bond; John P Adelman
Journal:  Learn Mem       Date:  2008-03-27       Impact factor: 2.460

10.  Distinct Ca2+ sources in dendritic spines of hippocampal CA1 neurons couple to SK and Kv4 channels.

Authors:  Kang Wang; Mike T Lin; John P Adelman; James Maylie
Journal:  Neuron       Date:  2014-01-22       Impact factor: 17.173

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