Literature DB >> 8917586

Distinct short-term plasticity at two excitatory synapses in the hippocampus.

P A Salin1, M Scanziani, R C Malenka, R A Nicoll.   

Abstract

A single mossy fiber input contains several release sites and is located on the proximal portion of the apical dendrite of CA3 neurons. It is, therefore, well suited to exert a strong influence on pyramidal cell excitability. Accordingly, the mossy fiber synapse has been referred to as a detonator or teacher synapse in autoassociative network models of the hippocampus. The very low firing rates of granule cells [Jung, M. W. & McNaughton, B. L. (1993) Hippocampus 3, 165-182], which give rise to the mossy fibers, raise the question of how the mossy fiber synapse temporally integrates synaptic activity. We have therefore addressed the frequency dependence of mossy fiber transmission and compared it to associational/commissural synapses in the CA3 region of the hippocampus. Paired pulse facilitation had a similar time course, but was 2-fold greater for mossy fiber synapses. Frequency facilitation, during which repetitive stimulation causes a reversible growth in synaptic transmission, was markedly different at the two synapses. At associational/ commissural synapses facilitation occurred only at frequencies greater than once every 10 s and reached a magnitude of about 125% of control. At mossy fiber synapses, facilitation occurred at frequencies as low as once every 40 s and reached a magnitude of 6-fold. Frequency facilitation was dependent on a rise in intraterminal Ca2+ and activation of Ca2+/calmodulin-dependent kinase II, and was greatly reduced at synapses expressing mossy fiber long-term potentiation. These results indicate that the mossy fiber synapse is able to integrate granule cell spiking activity over a broad range of frequencies, and this dynamic range is substantially reduced by long-term potentiation.

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Year:  1996        PMID: 8917586      PMCID: PMC24088          DOI: 10.1073/pnas.93.23.13304

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  22 in total

1.  The fine structure of the mossy fibre endings in the hippocampus of the rabbit.

Authors:  L H HAMLYN
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Review 2.  Short-term synaptic plasticity.

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4.  Long-term potentiation in cultures of single hippocampal granule cells: a presynaptic form of plasticity.

Authors:  G Tong; R C Malenka; R A Nicoll
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5.  Presynaptic changes during mossy fibre LTP revealed by NMDA receptor-mediated synaptic responses.

Authors:  M G Weisskopf; R A Nicoll
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6.  Short-term plasticity of a thalamocortical pathway dynamically modulated by behavioral state.

Authors:  M A Castro-Alamancos; B W Connors
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8.  Phosphorylation of rabphilin-3A by Ca2+/calmodulin- and cAMP-dependent protein kinases in vitro.

Authors:  E M Fykse; C Li; T C Südhof
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9.  Suppressing action of 2-amino-4-phosphonobutyric acid on mossy fiber-induced excitation in the guinea pig hippocampus.

Authors:  C Yamamoto; S Sawada; S Takada
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10.  2-Amino-4-phosphonobutyrate selectively blocks mossy fiber-CA3 responses in guinea pig but not rat hippocampus.

Authors:  T H Lanthorn; A H Ganong; C W Cotman
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  158 in total

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2.  Cholinergic modulation of excitatory synaptic transmission in the CA3 area of the hippocampus.

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4.  Decoding temporal information: A model based on short-term synaptic plasticity.

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6.  Differential mechanisms of transmission at three types of mossy fiber synapse.

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7.  Assessing the role of calcium-induced calcium release in short-term presynaptic plasticity at excitatory central synapses.

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8.  Presynaptic short-term depression is maintained during regulation of transmitter release at a GABAergic synapse in rat hippocampus.

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9.  Time-dependent reversal of long-term potentiation by low-frequency stimulation at the hippocampal mossy fiber-CA3 synapses.

Authors:  Y L Chen; C C Huang; K S Hsu
Journal:  J Neurosci       Date:  2001-06-01       Impact factor: 6.167

10.  The single place fields of CA3 cells: a two-stage transformation from grid cells.

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