AbstractThe transmembrane ephrinB ligands and their Eph receptor tyrosine kinases are known to regulate excitatory synaptic functions in the hippocampus. In the CA3–CA1 synapse, ephrinB ligands are localized to the post-synaptic membrane, while their cognate Eph receptors are presumed to be pre-synaptic. Interaction of ephrinB molecules with Eph receptors leads to changes in long-term potentiation (LTP), which has been reported to be mediated by reverse signaling into the post-synaptic membrane. Here, we demonstrate that the cytoplasmic domain of ephrinB3 and hence reverse signaling is not required for ephrinB dependent learning and memory tasks or for LTP of these synapses. Consistent with previous reports, we find that ephrinB3KO null mut...
EphB receptor tyrosine kinases control multiple steps in nervous system development. However, it rem...
A central nervous system neuron forms thousands of synaptic contacts, but the establishment of neuro...
EphB receptor tyrosine kinases control multiple steps in nervous system development. However, it rem...
EphrinB ligands and their Eph receptor tyrosine kinases are known to regulate excitatory synaptic fu...
AbstractThe transmembrane ephrinB ligands and their Eph receptor tyrosine kinases are known to regul...
Plasticity in the brain is essential for maintaining memory and learning and is associated with the ...
AbstractDuring development, Eph receptors mediate the repulsive axon guidance function of ephrins, a...
AbstractMembers of the Eph family of receptor tyrosine kinases control many aspects of cellular inte...
During development, Eph receptors mediate the repulsive axon guidance function of ephrins, a family ...
Proper function of the central nervous system relies on precise and coordinated cell-cell interactio...
The receptor tyrosine kinase Eph and its membrane-bound ligand ephrin are emerging key players in sy...
The hippocampus is a region of the brain required for associative memory formation, and hippocampal ...
Astrocytes are critical participants in synapse development and function, but their role in synaptic...
Proper function of the central nervous system relies on precise and coordinated cell-cell interactio...
AbstractEphB receptor tyrosine kinases are enriched at synapses, suggesting that these receptors pla...
EphB receptor tyrosine kinases control multiple steps in nervous system development. However, it rem...
A central nervous system neuron forms thousands of synaptic contacts, but the establishment of neuro...
EphB receptor tyrosine kinases control multiple steps in nervous system development. However, it rem...
EphrinB ligands and their Eph receptor tyrosine kinases are known to regulate excitatory synaptic fu...
AbstractThe transmembrane ephrinB ligands and their Eph receptor tyrosine kinases are known to regul...
Plasticity in the brain is essential for maintaining memory and learning and is associated with the ...
AbstractDuring development, Eph receptors mediate the repulsive axon guidance function of ephrins, a...
AbstractMembers of the Eph family of receptor tyrosine kinases control many aspects of cellular inte...
During development, Eph receptors mediate the repulsive axon guidance function of ephrins, a family ...
Proper function of the central nervous system relies on precise and coordinated cell-cell interactio...
The receptor tyrosine kinase Eph and its membrane-bound ligand ephrin are emerging key players in sy...
The hippocampus is a region of the brain required for associative memory formation, and hippocampal ...
Astrocytes are critical participants in synapse development and function, but their role in synaptic...
Proper function of the central nervous system relies on precise and coordinated cell-cell interactio...
AbstractEphB receptor tyrosine kinases are enriched at synapses, suggesting that these receptors pla...
EphB receptor tyrosine kinases control multiple steps in nervous system development. However, it rem...
A central nervous system neuron forms thousands of synaptic contacts, but the establishment of neuro...
EphB receptor tyrosine kinases control multiple steps in nervous system development. However, it rem...