p75NTR mediates ephrin-A reverse signaling required for axon repulsion and mapping
Reverse signaling by ephrin-As upon binding EphAs controls axon guidance and mapping. Ephrin-As are GPI-anchored to the membrane, requiring that they complex with transmembrane proteins that transduce their signals. We show that the p75 neurotrophin receptor (NTR) serves this role in retinal axons....
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Veröffentlicht in: | Neuron (Cambridge, Mass.) Mass.), 2008-09, Vol.59 (5), p.746-758 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Reverse signaling by ephrin-As upon binding EphAs controls axon guidance and mapping. Ephrin-As are GPI-anchored to the membrane, requiring that they complex with transmembrane proteins that transduce their signals. We show that the p75 neurotrophin receptor (NTR) serves this role in retinal axons. p75
NTR
and ephrin-A co-localize within caveolae along retinal axons and form a complex required for Fyn phosphorylation upon binding EphAs, activating a signaling pathway leading to cytoskeletal changes. In vitro, retinal axon repulsion to EphAs by ephrin-A reverse signaling requires p75
NTR
but repulsion to ephrin-As by EphA forward signaling does not. Constitutive and retina-specific p75
NTR
knockout mice have aberrant anterior shifts in retinal axon terminations in superior colliculus, consistent with diminished repellent activity mediated by graded ephrin-A reverse signaling induced by graded collicular EphAs. We conclude that p75
NTR
is a signaling partner for ephrin-As and the ephrin-A- p75
NTR
complex reverse signals to mediate axon repulsion required for guidance and mapping. |
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ISSN: | 0896-6273 1097-4199 |
DOI: | 10.1016/j.neuron.2008.07.032 |