EphrinA6 on chick retinal axons is a key component for p75(NTR)-dependent axon repulsion and TrkB-dependent axon branching.

PubWeight™: 0.89‹?›

🔗 View Article (PMC 4038918)

Published in Mol Cell Neurosci on April 02, 2011

Authors

Subathra Poopalasundaram1, Katharine J M Marler, Uwe Drescher

Author Affiliations

1: MRC Centre for Developmental Neurobiology, King's College London, New Hunt's House, Guy's Campus, London SE11UL, UK. s.poopalasundaram@medsch.ucl.ac.uk

Articles cited by this

Mechanisms underlying development of visual maps and receptive fields. Annu Rev Neurosci (2008) 4.00

Molecular gradients and development of retinotopic maps. Annu Rev Neurosci (2005) 2.92

Coexpressed EphA receptors and ephrin-A ligands mediate opposing actions on growth cone navigation from distinct membrane domains. Cell (2005) 2.88

Bidirectional modulation of synaptic functions by Eph/ephrin signaling. Nat Neurosci (2008) 2.85

Genetic analysis of ephrin-A2 and ephrin-A5 shows their requirement in multiple aspects of retinocollicular mapping. Neuron (2000) 2.30

A TrkB/EphrinA interaction controls retinal axon branching and synaptogenesis. J Neurosci (2008) 2.15

Effects of brain-derived neurotrophic factor on optic axon branching and remodelling in vivo. Nature (1995) 2.08

Topographic guidance labels in a sensory projection to the forebrain. Neuron (1998) 2.03

Modulation of EphA receptor function by coexpressed ephrinA ligands on retinal ganglion cell axons. Neuron (1999) 1.97

p75(NTR) mediates ephrin-A reverse signaling required for axon repulsion and mapping. Neuron (2008) 1.97

Silencing of EphA3 through a cis interaction with ephrinA5. Nat Neurosci (2006) 1.86

A robust system for RNA interference in the chicken using a modified microRNA operon. Dev Biol (2006) 1.83

An extracellular steric seeding mechanism for Eph-ephrin signaling platform assembly. Nat Struct Mol Biol (2010) 1.80

Opposing gradients of ephrin-As and EphA7 in the superior colliculus are essential for topographic mapping in the mammalian visual system. Neuron (2005) 1.77

Ephrin-As and patterned retinal activity act together in the development of topographic maps in the primary visual system. J Neurosci (2006) 1.72

Compartmentalized signaling by GPI-anchored ephrin-A5 requires the Fyn tyrosine kinase to regulate cellular adhesion. Genes Dev (1999) 1.52

Retinotectal mapping: new insights from molecular genetics. Annu Rev Cell Dev Biol (2005) 1.46

Topographic-specific axon branching controlled by ephrin-As is the critical event in retinotectal map development. J Neurosci (2001) 1.39

Mechanisms of retinotopic map development: Ephs, ephrins, and spontaneous correlated retinal activity. Prog Brain Res (2005) 1.36

An ephrin-A-dependent signaling pathway controls integrin function and is linked to the tyrosine phosphorylation of a 120-kDa protein. J Biol Chem (2000) 1.33

Activity-dependent mapping in the retinotectal projection. Curr Opin Neurobiol (2002) 1.15

Ephrin-A6, a new ligand for EphA receptors in the developing visual system. Dev Biol (2001) 0.99

Pro-neurotrophins secreted from retinal ganglion cell axons are necessary for ephrinA-p75NTR-mediated axon guidance. Neural Dev (2010) 0.93

Development of the visual system of the chick--a review. J Hirnforsch (1992) 0.92

Articles by these authors

A TrkB/EphrinA interaction controls retinal axon branching and synaptogenesis. J Neurosci (2008) 2.15

Silencing of EphA3 through a cis interaction with ephrinA5. Nat Neurosci (2006) 1.86

Opposing gradients of ephrin-As and EphA7 in the superior colliculus are essential for topographic mapping in the mammalian visual system. Neuron (2005) 1.77

Src family kinases are involved in EphA receptor-mediated retinal axon guidance. J Neurosci (2004) 1.29

Ephrin-As as receptors in topographic projections. Trends Neurosci (2002) 1.18

IQGAP1 promotes neurite outgrowth in a phosphorylation-dependent manner. J Biol Chem (2005) 1.13

BDNF promotes axon branching of retinal ganglion cells via miRNA-132 and p250GAP. J Neurosci (2014) 0.99

Robos are required for the correct targeting of retinal ganglion cell axons in the visual pathway of the brain. Mol Cell Neurosci (2007) 0.96

On the turning of Xenopus retinal axons induced by ephrin-A5. Development (2003) 0.95

Pro-neurotrophins secreted from retinal ganglion cell axons are necessary for ephrinA-p75NTR-mediated axon guidance. Neural Dev (2010) 0.93

Slit and Netrin-1 guide cranial motor axon pathfinding via Rho-kinase, myosin light chain kinase and myosin II. Neural Dev (2010) 0.91

Axonal ephrinA/EphA interactions, and the emergence of order in topographic projections. Semin Cell Dev Biol (2011) 0.91

Protein tyrosine phosphatase receptor type O inhibits trigeminal axon growth and branching by repressing TrkB and Ret signaling. J Neurosci (2013) 0.89

Ephrin-As play a rhombomere-specific role in trigeminal motor axon projections in the chick embryo. Dev Biol (2005) 0.86

Ephrin-A5 restricts topographically specific arborization in the chick retinotectal projection in vivo. Proc Natl Acad Sci U S A (2002) 0.84

Localization of Cadm2a and Cadm3 proteins during development of the zebrafish nervous system. J Comp Neurol (2011) 0.81

On the topographic targeting of basal vomeronasal axons through Slit-mediated chemorepulsion. Development (2003) 0.80

A no-Wnt situation: SFRPs as axon guidance molecules. Nat Neurosci (2005) 0.79

Effects Of Endurance Training On Muscular V'O2 Kinetics In Type 2 Diabetes Patients: 113 Board #2 June 1, 9: 30 AM - 11: 30 AM. Med Sci Sports Exerc (2016) 0.75