Literature DB >> 12700040

Integrins in the development, function and dysfunction of the nervous system.

Dennis O Clegg1, Kevin L Wingerd, Sherry T Hikita, Erin C Tolhurst.   

Abstract

Integrin receptors mediate cell-cell and cell-extracellular matrix (ECM) interactions in many different cell types, including neuronal cells. Earlier studies have shown a clear role for integrins in axon extension and cell adhesion/migration in CNS inflammation. Here we summarize more recent work that shows integrin functions in many phases of neural development, from neuroblast migration to synapse formation. Integrins of the beta-1 and alpha-v family are widely expressed on neurons at many stages of development, and their activity is regulated. Integrins are also important in the adult nervous system, since they have been implicated in synaptic plasticity involved in memory and learning. In addition, several diseases of the nervous system appear to involve beta-1, beta-2, and alpha-v integrins on leukocytes and glial cells. Research challenges for the future include understanding functions of specific integrin heterodimers and identifying the relevant integrin ligands that function in the nervous system.

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Year:  2003        PMID: 12700040     DOI: 10.2741/1020

Source DB:  PubMed          Journal:  Front Biosci        ISSN: 1093-4715


  29 in total

1.  RACK1 is necessary for the formation of point contacts and regulates axon growth.

Authors:  Leah Kershner; Kristy Welshhans
Journal:  Dev Neurobiol       Date:  2017-03-14       Impact factor: 3.964

2.  The Gain-of-Function Integrin β3 Pro33 Variant Alters the Serotonin System in the Mouse Brain.

Authors:  Michael R Dohn; Christopher G Kooker; Lisa Bastarache; Tammy Jessen; Capria Rinaldi; Seth Varney; Matthew D Mazalouskas; Hope Pan; Kendra H Oliver; Digna R Velez Edwards; James S Sutcliffe; Joshua C Denny; Ana M D Carneiro
Journal:  J Neurosci       Date:  2017-10-16       Impact factor: 6.167

Review 3.  Regulation of axonal outgrowth and pathfinding by integrin-ECM interactions.

Authors:  Jonathan P Myers; Miguel Santiago-Medina; Timothy M Gomez
Journal:  Dev Neurobiol       Date:  2011-11       Impact factor: 3.964

Review 4.  Integrins as receptor targets for neurological disorders.

Authors:  Xin Wu; Doodipala Samba Reddy
Journal:  Pharmacol Ther       Date:  2011-12-30       Impact factor: 12.310

Review 5.  Cerebellar regulation mechanisms learned from studies on GluRdelta2.

Authors:  Tomoo Hirano
Journal:  Mol Neurobiol       Date:  2006-02       Impact factor: 5.590

6.  Developmental and injury-induced expression of alpha1beta1 and alpha6beta1 integrins in the rat spinal cord.

Authors:  K Adam Baker; Theo Hagg
Journal:  Brain Res       Date:  2006-12-11       Impact factor: 3.252

Review 7.  Down syndrome and the enteric nervous system.

Authors:  S W Moore
Journal:  Pediatr Surg Int       Date:  2008-07-17       Impact factor: 1.827

Review 8.  A neurocentric perspective on glioma invasion.

Authors:  Vishnu Anand Cuddapah; Stefanie Robel; Stacey Watkins; Harald Sontheimer
Journal:  Nat Rev Neurosci       Date:  2014-07       Impact factor: 34.870

Review 9.  Studies on integrins in the nervous system.

Authors:  Sumiko Denda; Louis F Reichardt
Journal:  Methods Enzymol       Date:  2007       Impact factor: 1.600

10.  Molecular components underlying nongenomic thyroid hormone signaling in embryonic zebrafish neurons.

Authors:  Marc A Yonkers; Angeles B Ribera
Journal:  Neural Dev       Date:  2009-06-08       Impact factor: 3.842

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