AbstractEphB receptor tyrosine kinases are enriched at synapses, suggesting that these receptors play a role in synapse formation or function. We find that EphrinB binding to EphB induces a direct interaction of EphB with NMDA-type glutamate receptors. This interaction occurs at the cell surface and is mediated by the extracellular regions of the two receptors, but does not require the kinase activity of EphB. The kinase activity of EphB may be important for subsequent steps in synapse formation, as perturbation of EphB tyrosine kinase activity affects the number of synaptic specializations that form in cultured neurons. These findings indicate that EphrinB activation of EphB promotes an association of EphB with NMDA receptors that may be c...
AbstractDuring the development of excitatory synapses, molecules cluster on dendrites to form postsy...
Synapses are transcellular structures that form between neurons. They are highly complex, due to the...
SummaryMotile dendritic filopodial processes are thought to be precursors of spine synapses, but how...
AbstractEphB receptor tyrosine kinases are enriched at synapses, suggesting that these receptors pla...
A central nervous system neuron forms thousands of synaptic contacts, but the establishment of neuro...
AbstractDuring development, Eph receptors mediate the repulsive axon guidance function of ephrins, a...
Proper function of the central nervous system relies on precise and coordinated cell-cell interactio...
Proper function of the central nervous system relies on precise and coordinated cell-cell interactio...
Proper function of the central nervous system relies on precise and coordinated cell-cell interactio...
EphrinB ligands and their Eph receptor tyrosine kinases are known to regulate excitatory synaptic fu...
During development, Eph receptors mediate the repulsive axon guidance function of ephrins, a family ...
Proper function in the mammalian central nervous system relies on the precise communication between ...
AbstractThe transmembrane ephrinB ligands and their Eph receptor tyrosine kinases are known to regul...
AbstractMembers of the Eph family of receptor tyrosine kinases control many aspects of cellular inte...
There is increasing evidence that Eph receptors and their transmembrane ligands, named ephrins, inte...
AbstractDuring the development of excitatory synapses, molecules cluster on dendrites to form postsy...
Synapses are transcellular structures that form between neurons. They are highly complex, due to the...
SummaryMotile dendritic filopodial processes are thought to be precursors of spine synapses, but how...
AbstractEphB receptor tyrosine kinases are enriched at synapses, suggesting that these receptors pla...
A central nervous system neuron forms thousands of synaptic contacts, but the establishment of neuro...
AbstractDuring development, Eph receptors mediate the repulsive axon guidance function of ephrins, a...
Proper function of the central nervous system relies on precise and coordinated cell-cell interactio...
Proper function of the central nervous system relies on precise and coordinated cell-cell interactio...
Proper function of the central nervous system relies on precise and coordinated cell-cell interactio...
EphrinB ligands and their Eph receptor tyrosine kinases are known to regulate excitatory synaptic fu...
During development, Eph receptors mediate the repulsive axon guidance function of ephrins, a family ...
Proper function in the mammalian central nervous system relies on the precise communication between ...
AbstractThe transmembrane ephrinB ligands and their Eph receptor tyrosine kinases are known to regul...
AbstractMembers of the Eph family of receptor tyrosine kinases control many aspects of cellular inte...
There is increasing evidence that Eph receptors and their transmembrane ligands, named ephrins, inte...
AbstractDuring the development of excitatory synapses, molecules cluster on dendrites to form postsy...
Synapses are transcellular structures that form between neurons. They are highly complex, due to the...
SummaryMotile dendritic filopodial processes are thought to be precursors of spine synapses, but how...