Literature DB >> 12099903

A point mutant of GAP-43 induces enhanced short-term and long-term hippocampal plasticity.

S Hulo1, S Alberi, T Laux, D Muller, P Caroni.   

Abstract

The growth-associated protein GAP-43 (or neuromodulin or B-50) plays a critical role during development in mechanisms of axonal growth and formation of synaptic networks. At later times, GAP-43 has also been implicated in the regulation of synaptic transmission and properties of plasticity such as long-term potentiation. In a molecular approach, we have analyzed transgenic mice overexpressing different mutated forms of GAP-43 or deficient in GAP-43 to investigate the role of the molecule in short-term and long-term plasticity. We report that overexpression of a mutated form of GAP-43 that mimics constitutively phosphorylated GAP-43 results in an enhancement of long-term potentiation in CA1 hippocampal slices. This effect is specific, because LTP was affected neither in transgenic mice overexpressing mutated forms of non-phosphorylatable GAP-43 nor in GAP-43 deficient mice. The increased LTP observed in transgenic mice expressing a constitutively phosphorylated GAP-43 was associated with an increased paired-pulse facilitation as well as an increased summation of responses during high frequency bursts. These results indicate that, while GAP-43 is not necessary for LTP induction, its phosphorylation may regulate presynaptic properties, thereby affecting synaptic plasticity and the induction of LTP.

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Year:  2002        PMID: 12099903     DOI: 10.1046/j.1460-9568.2002.02026.x

Source DB:  PubMed          Journal:  Eur J Neurosci        ISSN: 0953-816X            Impact factor:   3.386


  11 in total

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3.  Alterations in mossy fiber physiology and GAP-43 expression and function in transgenic mice overexpressing HuD.

Authors:  Daniel C Tanner; Shenfeng Qiu; Federico Bolognani; L Donald Partridge; Edwin J Weeber; Nora I Perrone-Bizzozero
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4.  Cognitive outcome following brain injury and treatment with an inhibitor of Nogo-A in association with an attenuated downregulation of hippocampal growth-associated protein-43 expression.

Authors:  Niklas Marklund; Florence M Bareyre; Nicolas C Royo; Hilaire J Thompson; Anis K Mir; M Sean Grady; Martin E Schwab; Tracy K McIntosh
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5.  GAP43 stimulates inositol trisphosphate-mediated calcium release in response to hypotonicity.

Authors:  Marco Caprini; Ana Gomis; Hugo Cabedo; Rosa Planells-Cases; Carlos Belmonte; Félix Viana; Antonio Ferrer-Montiel
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6.  Oligodendrocytes as regulators of neuronal networks during early postnatal development.

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7.  Impaired sprouting and axonal atrophy in cerebellar climbing fibres following in vivo silencing of the growth-associated protein GAP-43.

Authors:  Giorgio Grasselli; Georgia Mandolesi; Piergiorgio Strata; Paolo Cesare
Journal:  PLoS One       Date:  2011-06-10       Impact factor: 3.240

Review 8.  A Shift from a Pivotal to Supporting Role for the Growth-Associated Protein (GAP-43) in the Coordination of Axonal Structural and Functional Plasticity.

Authors:  Matthew R Holahan
Journal:  Front Cell Neurosci       Date:  2017-08-31       Impact factor: 5.505

9.  Structural basis for the interaction of unstructured neuron specific substrates neuromodulin and neurogranin with Calmodulin.

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Journal:  Sci Rep       Date:  2013       Impact factor: 4.379

Review 10.  Structural plasticity of climbing fibers and the growth-associated protein GAP-43.

Authors:  Giorgio Grasselli; Piergiorgio Strata
Journal:  Front Neural Circuits       Date:  2013-02-21       Impact factor: 3.492

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