Literature DB >> 11923414

The Ras1-mitogen-activated protein kinase signal transduction pathway regulates synaptic plasticity through fasciclin II-mediated cell adhesion.

Young-Ho Koh1, Catalina Ruiz-Canada, Michael Gorczyca, Vivian Budnik.   

Abstract

Ras proteins are small GTPases with well known functions in cell proliferation and differentiation. In these processes, they play key roles as molecular switches that can trigger distinct signal transduction pathways, such as the mitogen-activated protein kinase (MAPK) pathway, the phosphoinositide-3 kinase pathway, and the Ral-guanine nucleotide dissociation stimulator pathway. Several studies have implicated Ras proteins in the development and function of synapses, but the molecular mechanisms for this regulation are poorly understood. Here, we demonstrate that the Ras-MAPK pathway is involved in synaptic plasticity at the Drosophila larval neuromuscular junction. Both Ras1 and MAPK are expressed at the neuromuscular junction, and modification of their activity levels results in an altered number of synaptic boutons. Gain- or loss-of-function mutations in Ras1 and MAPK reveal that regulation of synapse structure by this signal transduction pathway is dependent on fasciclin II localization at synaptic boutons. These results provide evidence for a Ras-dependent signaling cascade that regulates fasciclin II-mediated cell adhesion at synaptic terminals during synapse growth.

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Year:  2002        PMID: 11923414      PMCID: PMC6758305          DOI: 20026241

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


  53 in total

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Journal:  Curr Opin Neurobiol       Date:  2000-02       Impact factor: 6.627

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Journal:  Neuron       Date:  1996-10       Impact factor: 17.173

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Journal:  Cell       Date:  1994-03-11       Impact factor: 41.582

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Journal:  J Neurosci       Date:  1999-09-15       Impact factor: 6.167

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Journal:  Science       Date:  1998-04-03       Impact factor: 47.728

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Journal:  Cell Mol Life Sci       Date:  2000-04       Impact factor: 9.261

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  40 in total

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3.  NFAT regulates pre-synaptic development and activity-dependent plasticity in Drosophila.

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Review 4.  Plasticity and second messengers during synapse development.

Authors:  Leslie C Griffith; Vivian Budnik
Journal:  Int Rev Neurobiol       Date:  2006       Impact factor: 3.230

Review 5.  Small G protein signaling in neuronal plasticity and memory formation: the specific role of ras family proteins.

Authors:  Xiaojing Ye; Thomas J Carew
Journal:  Neuron       Date:  2010-11-04       Impact factor: 17.173

6.  Overexpression screen in Drosophila identifies neuronal roles of GSK-3 beta/shaggy as a regulator of AP-1-dependent developmental plasticity.

Authors:  A L Franciscovich; A D Vrailas Mortimer; A A Freeman; J Gu; S Sanyal
Journal:  Genetics       Date:  2008-10-01       Impact factor: 4.562

7.  The Spacing Effect for Structural Synaptic Plasticity Provides Specificity and Precision in Plastic Changes.

Authors:  Alvaro San Martin; Lorena Rela; Bruce Gelb; Mario Rafael Pagani
Journal:  J Neurosci       Date:  2017-04-21       Impact factor: 6.167

8.  Extracellular signal-regulated kinase (ERK) inhibition does not prevent the development or expression of tolerance to and dependence on morphine in the mouse.

Authors:  Lionel Moulédous; Miguel F Díaz; Howard B Gutstein
Journal:  Pharmacol Biochem Behav       Date:  2007-07-18       Impact factor: 3.533

9.  Unc-51 controls active zone density and protein composition by downregulating ERK signaling.

Authors:  Yogesh P Wairkar; Hirofumi Toda; Hiroaki Mochizuki; Katsuo Furukubo-Tokunaga; Toshifumi Tomoda; Aaron Diantonio
Journal:  J Neurosci       Date:  2009-01-14       Impact factor: 6.167

10.  Generation and characterization of monoclonal antibodies specific to Drosophila presenilin.

Authors:  Ho Thi Thu Cuc; Jong Bok Seo; Jin Kyu Choi; Won Tae Kim; Seok Jou Park; Dae Weon Lee; Yong Sun Kim; Mark E Fortini; Young Ho Koh
Journal:  Hybridoma (Larchmt)       Date:  2009-06
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