Literature DB >> 21210813

Growth cone morphology and spreading are regulated by a dynamin-cortactin complex at point contacts in hippocampal neurons.

Svetlana Kurklinsky1, Jing Chen, Mark A McNiven.   

Abstract

Neuronal growth cone (GC) migration and targeting are essential processes for the formation of a neural network during embryonic development. Currently, the mechanisms that support directed motility of GCs are not fully defined. The large GTPase dynamin and an interacting actin-binding protein, cortactin, have been localized to GCs, although the function performed by this complex is unclear. We have found that cortactin and the ubiquitous form of dynamin (Dyn) 2 exhibit a striking co-localization at the base of the transition zone of advancing GCs of embryonic hippocampal neurons. Confocal and total internal reflection fluorescence microscopies demonstrate that this basal localization represents point contacts. Exogenous expression of wild-type Dyn2 and cortactin leads to large, exceptionally flat, and static GCs, whereas disrupting this complex has no such effect. We find that excessive GC spreading is induced by Dyn2 and cortactin over-expression and substantial recruitment of the point contact-associated, actin-binding protein α-actinin1 to the ventral GC membrane. The distributions of other point contact proteins such as vinculin or paxillin appear unchanged. Immunoprecipitation experiments show that both Dyn2 and cortactin reside in a complex with α-actinin1. These findings provide new insights into the role of Dyn2 and the actin cytoskeleton in GC adhesion and motility.
© 2011 Mayo Clinic. Journal of Neurochemistry © 2011 International Society for Neurochemistry.

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Year:  2011        PMID: 21210813      PMCID: PMC3278041          DOI: 10.1111/j.1471-4159.2011.07169.x

Source DB:  PubMed          Journal:  J Neurochem        ISSN: 0022-3042            Impact factor:   5.372


  61 in total

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Authors:  M A McNiven; H Cao; K R Pitts; Y Yoon
Journal:  Trends Biochem Sci       Date:  2000-03       Impact factor: 13.807

2.  Neurite consolidation is an active process requiring constant repression of protrusive activity.

Authors:  Ana Mingorance-Le Meur; Timothy P O'Connor
Journal:  EMBO J       Date:  2008-12-18       Impact factor: 11.598

3.  Identification of dynamin 2, an isoform ubiquitously expressed in rat tissues.

Authors:  T A Cook; R Urrutia; M A McNiven
Journal:  Proc Natl Acad Sci U S A       Date:  1994-01-18       Impact factor: 11.205

4.  Dynamin2 GTPase and cortactin remodel actin filaments.

Authors:  Olivia L Mooren; Tatyana I Kotova; Andrew J Moore; Dorothy A Schafer
Journal:  J Biol Chem       Date:  2009-07-15       Impact factor: 5.157

5.  Distinct phospho-forms of cortactin differentially regulate actin polymerization and focal adhesions.

Authors:  Anne E Kruchten; Eugene W Krueger; Yu Wang; Mark A McNiven
Journal:  Am J Physiol Cell Physiol       Date:  2008-09-03       Impact factor: 4.249

Review 6.  Alpha-actinin structure and regulation.

Authors:  B Sjöblom; A Salmazo; K Djinović-Carugo
Journal:  Cell Mol Life Sci       Date:  2008-09       Impact factor: 9.261

7.  Isoform and splice-variant specific functions of dynamin-2 revealed by analysis of conditional knock-out cells.

Authors:  Ya-Wen Liu; Mark C Surka; Thomas Schroeter; Vasyl Lukiyanchuk; Sandra L Schmid
Journal:  Mol Biol Cell       Date:  2008-10-15       Impact factor: 4.138

8.  Cortactin colocalizes with filopodial actin and accumulates at IgCAM adhesion sites in Aplysia growth cones.

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Journal:  J Neurosci Res       Date:  2009-04       Impact factor: 4.164

9.  An interaction between alpha-actinin and the beta 1 integrin subunit in vitro.

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Journal:  J Cell Biol       Date:  1990-08       Impact factor: 10.539

10.  An interaction between zyxin and alpha-actinin.

Authors:  A W Crawford; J W Michelsen; M C Beckerle
Journal:  J Cell Biol       Date:  1992-03       Impact factor: 10.539

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  19 in total

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2.  Regulation of ECM degradation and axon guidance by growth cone invadosomes.

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5.  Differential targeting of dynamin-1 and dynamin-3 to nerve terminals during chronic suppression of neuronal activity.

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Journal:  Mol Cell Neurosci       Date:  2015-03-27       Impact factor: 4.314

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

Authors:  Leah Kershner; Kristy Welshhans
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Review 7.  Cell adhesion and invasion mechanisms that guide developing axons.

Authors:  Caitlin A Short; Edwin A Suarez-Zayas; Timothy M Gomez
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Review 8.  HDAC signaling in neuronal development and axon regeneration.

Authors:  Yongcheol Cho; Valeria Cavalli
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Review 9.  Actin dynamics in growth cone motility and navigation.

Authors:  Timothy M Gomez; Paul C Letourneau
Journal:  J Neurochem       Date:  2013-11-17       Impact factor: 5.372

10.  Shootin1-cortactin interaction mediates signal-force transduction for axon outgrowth.

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Journal:  J Cell Biol       Date:  2015-08-10       Impact factor: 10.539

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