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      NMDA Receptors Increase the Size of GABAergic Terminals and Enhance GABA Release

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          Abstract

          In developing cerebellar interneurons, NMDA increases spontaneous GABA release by activating presynaptic NMDA receptors. We investigated the role of these receptors on differentiating basket/stellate cells in cerebellar cultures grown under conditions allowing functional synaptic transmission. Presynaptic GABAergic boutons were visualized either by GAD65 immunostaining or by using cells derived from GAD65-enhanced green fluorescent protein (eGFP) transgenic mice, in which cerebellar basket/stellate cells express eGFP. After the first week in culture, whole-cell recordings from granule cells reveal that acute application of NMDA increases miniature IPSC (mIPSC) frequency. Interestingly, after 2 weeks, the mIPSC frequency increases compared with the first week but is not modulated by NMDA. Furthermore, in cultures chronically treated with NMDA for 1 week, the size of the GABAergic boutons increases. This growth is paralleled by increased mIPSC frequency and the loss of NMDA sensitivity. Direct patch-clamp recording from these presynaptic terminals reveals single NMDA-activated channels, showing multiple conductance levels, and electronic propagation from the somatodendritic compartment. Our results demonstrate that NMDA receptors alter GABAergic synapses in developing cerebellar cultures by increasing the size of the terminal and spontaneous GABA release. These findings parallel changes in inhibitory synaptic efficacy seen in vivo in developing GABAergic interneurons of the molecular layer of the cerebellum.

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          Author and article information

          Journal
          J Neurosci
          J. Neurosci
          jneuro
          The Journal of Neuroscience
          Society for Neuroscience
          0270-6474
          1529-2401
          23 February 2005
          : 25
          : 8
          : 2024-2031
          Affiliations
          [1 ]Department of Physiology and Biophysics, Georgetown University School of Medicine, Washington, DC 20007, [2 ]Instituto de Investigaciones Farmacológicas, Consejo Nacional de Investigaciones Científicas y Técnicas, 1113 Buenos Aires, Argentina, and [3 ]Laboratory of Molecular Biology and Genetics, Institute of Experimental Medicine, H-1450 Budapest, Hungary
          Article
          PMC6726051 PMC6726051 6726051 00252024
          10.1523/JNEUROSCI.4980-04.2005
          6726051
          15728842
          1b65ef88-efe2-4f59-9cf9-4e13a48cf87d
          Copyright © 2005 Society for Neuroscience 0270-6474/05/252024-08.00/0
          History
          : 7 January 2005
          : 2 July 2004
          : 4 January 2005
          Categories
          Cellular/Molecular
          Custom metadata
          2024
          ARTICLE

          synapses,cerebellum,interneuron,BDNF,GFP,patch clamp
          synapses, cerebellum, interneuron, BDNF, GFP, patch clamp

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