Literature DB >> 16029114

The actin cytoskeleton: integrating form and function at the synapse.

Christian Dillon1, Yukiko Goda.   

Abstract

Synapses are highly specialized intercellular junctions that mediate the transmission of information between axons and target cells. A fundamental property of synapses is their ability to modify the efficacy of synaptic communication through various forms of synaptic plasticity. Recent developments in imaging techniques have revealed that synapses exhibit a high degree of morphological plasticity under basal conditions and also in response to neuronal activity that induces alterations in synaptic strength. The underlying molecular basis for this morphological plasticity has attracted much attention, yet its functional significance to the mechanisms of synaptic transmission and synaptic plasticity remains elusive. These morphological changes ultimately require the dynamic actin cytoskeleton, which is the major structural component of synapses. Delineating the physiological roles of the actin cytoskeleton in supporting synaptic transmission and synaptic plasticity, therefore, paves the way for gaining molecular insights into when and how synaptic machineries couple synapse form and function.

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Year:  2005        PMID: 16029114     DOI: 10.1146/annurev.neuro.28.061604.135757

Source DB:  PubMed          Journal:  Annu Rev Neurosci        ISSN: 0147-006X            Impact factor:   12.449


  161 in total

1.  Dual pools of actin at presynaptic terminals.

Authors:  Adam Bleckert; Huzefa Photowala; Simon Alford
Journal:  J Neurophysiol       Date:  2012-03-28       Impact factor: 2.714

Review 2.  Arc in synaptic plasticity: from gene to behavior.

Authors:  Erica Korb; Steven Finkbeiner
Journal:  Trends Neurosci       Date:  2011-09-30       Impact factor: 13.837

3.  Learning, AMPA receptor mobility and synaptic plasticity depend on n-cofilin-mediated actin dynamics.

Authors:  Marco B Rust; Christine B Gurniak; Marianne Renner; Hugo Vara; Laura Morando; Andreas Görlich; Marco Sassoè-Pognetto; Mumna Al Banchaabouchi; Maurizio Giustetto; Antoine Triller; Daniel Choquet; Walter Witke
Journal:  EMBO J       Date:  2010-04-20       Impact factor: 11.598

4.  Relax? Don't do it!-Linking presynaptic vesicle clustering with mechanical tension.

Authors:  Peter Engerer; Stephan J Sigrist
Journal:  HFSP J       Date:  2009-12-10

5.  Differential dynamics and activity-dependent regulation of alpha- and beta-neurexins at developing GABAergic synapses.

Authors:  Yu Fu; Z Josh Huang
Journal:  Proc Natl Acad Sci U S A       Date:  2010-12-13       Impact factor: 11.205

Review 6.  Deconstructing signal transduction pathways that regulate the actin cytoskeleton in dendritic spines.

Authors:  Peter Penzes; Michael E Cahill
Journal:  Cytoskeleton (Hoboken)       Date:  2012-03-12

7.  Physiological activation of synaptic Rac>PAK (p-21 activated kinase) signaling is defective in a mouse model of fragile X syndrome.

Authors:  Lulu Y Chen; Christopher S Rex; Alex H Babayan; Eniko A Kramár; Gary Lynch; Christine M Gall; Julie C Lauterborn
Journal:  J Neurosci       Date:  2010-08-18       Impact factor: 6.167

8.  Lipid bilayer membrane-triggered presynaptic vesicle assembly.

Authors:  Gopakumar Gopalakrishnan; Peter Thostrup; Isabelle Rouiller; Anna Lisa Lucido; Wiam Belkaïd; David R Colman; R Bruce Lennox
Journal:  ACS Chem Neurosci       Date:  2009-10-15       Impact factor: 4.418

9.  Activity-dependent movements of postsynaptic scaffolds at inhibitory synapses.

Authors:  Cyril Hanus; Marie-Virginie Ehrensperger; Antoine Triller
Journal:  J Neurosci       Date:  2006-04-26       Impact factor: 6.167

10.  The role of the actin cytoskeleton in oxytocin and vasopressin release from rat supraoptic nucleus neurons.

Authors:  Vicky A Tobin; Mike Ludwig
Journal:  J Physiol       Date:  2007-05-03       Impact factor: 5.182

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