AbstractAxon guidance requires signal transduction of extracellular cues through the plasma membrane for directional motility. Here we present evidence that cholesterol- and sphingolipid-enriched membrane microdomains (lipid rafts) mediate specific guidance responses of nerve growth cones. Disruption of lipid rafts by various approaches targeting cholesterol or gangliosides selectively abolished growth cone attraction and repulsion in BDNF and netrin-1 gradients, respectively, without affecting glutamate-induced attraction. Interestingly, local raft disruption on one side of the growth cone in bath BDNF or netrin-1 produced opposite turning responses to that induced by the gradients. Raft manipulation also blocked Semaphorin 3A-induced grow...
Membrane lipid rafts (i.e., cholesterol/sphingolipids domains) exhibit functional roles in both heal...
During the development of the nervous system, neurons migrate to their final location and extend neu...
AbstractGuidepost cells are known to alter the behavior of growth cones in vivo, yet the nature of c...
AbstractLipid rafts are thought to serve as plasma membrane platforms for localized trafficking and ...
International audienceThe development of neuronal circuits is controlled by guidance molecules that ...
During brain development, Uncoordinated locomotion 5 (UNC5) receptors control axonal extension throu...
Nerve growth factor (NGF) is an important mediator in the initiation of the inflammatory response an...
AbstractIn order to form a functional nervous system, neurones extend axons, often over long distanc...
The exquisite complexity of neural connectivity depends upon the precise navigation of axons to thei...
Determining how axon guidance receptors transmit signals to allow precise pathfinding decisions is f...
During brain development, UNC5 receptors play a key role in controlling axonal extension through the...
AbstractGuidance molecules present in both axonal and dendritic growth cones mediate neuronal respon...
Lipid rafts are specialized plasma membrane micro-domains highly enriched in cholesterol, sphingolip...
AbstractNogoA, a myelin-associated component, inhibits neurite outgrowth. Nogo66, a portion of NogoA...
Proper patterning of the nervous system requires that developing axons find appropriate postsynaptic...
Membrane lipid rafts (i.e., cholesterol/sphingolipids domains) exhibit functional roles in both heal...
During the development of the nervous system, neurons migrate to their final location and extend neu...
AbstractGuidepost cells are known to alter the behavior of growth cones in vivo, yet the nature of c...
AbstractLipid rafts are thought to serve as plasma membrane platforms for localized trafficking and ...
International audienceThe development of neuronal circuits is controlled by guidance molecules that ...
During brain development, Uncoordinated locomotion 5 (UNC5) receptors control axonal extension throu...
Nerve growth factor (NGF) is an important mediator in the initiation of the inflammatory response an...
AbstractIn order to form a functional nervous system, neurones extend axons, often over long distanc...
The exquisite complexity of neural connectivity depends upon the precise navigation of axons to thei...
Determining how axon guidance receptors transmit signals to allow precise pathfinding decisions is f...
During brain development, UNC5 receptors play a key role in controlling axonal extension through the...
AbstractGuidance molecules present in both axonal and dendritic growth cones mediate neuronal respon...
Lipid rafts are specialized plasma membrane micro-domains highly enriched in cholesterol, sphingolip...
AbstractNogoA, a myelin-associated component, inhibits neurite outgrowth. Nogo66, a portion of NogoA...
Proper patterning of the nervous system requires that developing axons find appropriate postsynaptic...
Membrane lipid rafts (i.e., cholesterol/sphingolipids domains) exhibit functional roles in both heal...
During the development of the nervous system, neurons migrate to their final location and extend neu...
AbstractGuidepost cells are known to alter the behavior of growth cones in vivo, yet the nature of c...