Literature DB >> 9636115

Synaptically evoked glutamate transport currents may be used to detect the expression of long-term potentiation in cerebellar culture.

D J Linden1.   

Abstract

Cerebellar long-term potentiation (LTP) is a use-dependent increase in the strength of the granule cell-Purkinje neuron synapse that occurs after brief stimulation of granule cell axons at 2-8 Hz. Previous work has shown that cerebellar LTP also may be seen when synaptic currents are evoked in granule cell-glial cell pairs in culture. This finding suggests a model in which cerebellar LTP is expressed presynaptically and therefore may be detected by either neuronal or glial postsynaptic cells. However, synaptic currents evoked in both granule cell-glial cell pairs and granule cell-Purkinje neuron pairs in culture are mediated primarily by alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA)/kainate receptors, raising the possibility that cerebellar LTP might be expressed postsynaptically in both glial cells and Purkinje neurons in a similar manner. To address this question, glutamate transport currents were recorded in granule cell-glial cell pairs in culture by pharmacological isolation. These currents were increased by substitution of internal Cl with NO3 and were blocked by -pyrrolidine-2,4-dicarboxylate, both characteristics of the major cloned Bergmann glial cell glutamate transporter, EAAT1. After acquisition of baseline responses, LTP of isolated transport current was evoked by stimulation at 4 Hz (100 pulses) and could be blocked by removal of external Ca during this stimulation. The expression of LTP was associated with a decrease in the rate of synaptic failures and a decrease in the degree of paired-pulse facilitation. These findings, when taken together with the previous observation that both Purkinje neuron and glial AMPA/kainate responses can be used to detect cerebellar LTP, strongly suggest that the expression of cerebellar LTP is, at least in part, presynaptic. This strategy should also be useful in illuminating the locus of expression of other model systems of information storage such as hippocampal LTP/long-term depression.

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Year:  1998        PMID: 9636115     DOI: 10.1152/jn.1998.79.6.3151

Source DB:  PubMed          Journal:  J Neurophysiol        ISSN: 0022-3077            Impact factor:   2.714


  10 in total

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4.  Reversing cerebellar long-term depression.

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6.  Activation of presynaptic cAMP-dependent protein kinase is required for induction of cerebellar long-term potentiation.

Authors:  D J Linden; S Ahn
Journal:  J Neurosci       Date:  1999-12-01       Impact factor: 6.167

7.  Nitric oxide is required for the induction and heterosynaptic spread of long-term potentiation in rat cerebellar slices.

Authors:  S Jacoby; R E Sims; N A Hartell
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8.  Long-term potentiation at hippocampal perforant path-dentate astrocyte synapses.

Authors:  Xiong Zhang; Jian Zhang; Chu Chen
Journal:  Biochem Biophys Res Commun       Date:  2009-04-07       Impact factor: 3.575

9.  Long-term potentiation of the responses to parallel fiber stimulation in mouse cerebellar cortex in vivo.

Authors:  X Wang; G Chen; W Gao; T Ebner
Journal:  Neuroscience       Date:  2009-02-04       Impact factor: 3.590

Review 10.  Activity-Dependent Plasticity of Astroglial Potassium and Glutamate Clearance.

Authors:  Giselle Cheung; Jérémie Sibille; Jonathan Zapata; Nathalie Rouach
Journal:  Neural Plast       Date:  2015-08-04       Impact factor: 3.599

  10 in total

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