Translationally controlled tumor protein (Tctp) contributes to retinal circuitry formation by promoting axon growth and guidance, but it remains unknown to what extent axonal Tctp specifically influences axon development programs. Various genome-wide profiling studies have ranked tctp transcripts among the most enriched in the axonal compartment of distinct neuronal populations, including embryonic retinal ganglion cells (RGCs), suggesting its expression can be regulated locally and that this may be important during development. Here, we report that growth cone Tctp levels change rapidly in response to Netrin-1 and Ephrin-A1, two guidance cues encountered by navigating RGC growth cones. This regulation is opposite in effect, as we observed ...
Netrins are a family of extracellular proteins that function as chemotropic guidance cues for migrat...
AbstractEmbryonic retinal ganglion cell (RGC) axons must extend toward and grow through the optic di...
Cell adhesion molecules play a central role in mediating axonal tract development within the nascent...
Translationally controlled tumor protein (Tctp) contributes to retinal circuitry formation by promot...
Translationally controlled tumor protein (Tctp) contributes to retinal circuitry formation by promot...
Translationally controlled tumor protein (Tctp) contributes to retinal circuitry formation by promot...
Tctp contributes to retinal circuitry formation by promoting axon growth and guidance, but it remain...
Translationally controlled tumor protein (Tctp) contributes to retinal circuitry formation by promot...
Although tctp expression in many areas of the human brain was reported more than 15 years ago, littl...
AbstractGrowth cones contain mRNAs, translation machinery, and, as we report here, protein degradati...
AbstractNetrin-1 promotes outgrowth of axons in vitro through the receptor Deleted in Colorectal Can...
During the embryonic development of the nervous System, groups of multipotent cells proliferate, mig...
The transcript encoding translationally controlled tumor protein (Tctp), a molecule associated with ...
Netrins are a small family of secreted proteins that function as chemotropic cues directing cell an...
University of Minnesota Ph.D. dissertation. June 2010. Major: Neuroscience. Advisor: Paul C. Letourn...
Netrins are a family of extracellular proteins that function as chemotropic guidance cues for migrat...
AbstractEmbryonic retinal ganglion cell (RGC) axons must extend toward and grow through the optic di...
Cell adhesion molecules play a central role in mediating axonal tract development within the nascent...
Translationally controlled tumor protein (Tctp) contributes to retinal circuitry formation by promot...
Translationally controlled tumor protein (Tctp) contributes to retinal circuitry formation by promot...
Translationally controlled tumor protein (Tctp) contributes to retinal circuitry formation by promot...
Tctp contributes to retinal circuitry formation by promoting axon growth and guidance, but it remain...
Translationally controlled tumor protein (Tctp) contributes to retinal circuitry formation by promot...
Although tctp expression in many areas of the human brain was reported more than 15 years ago, littl...
AbstractGrowth cones contain mRNAs, translation machinery, and, as we report here, protein degradati...
AbstractNetrin-1 promotes outgrowth of axons in vitro through the receptor Deleted in Colorectal Can...
During the embryonic development of the nervous System, groups of multipotent cells proliferate, mig...
The transcript encoding translationally controlled tumor protein (Tctp), a molecule associated with ...
Netrins are a small family of secreted proteins that function as chemotropic cues directing cell an...
University of Minnesota Ph.D. dissertation. June 2010. Major: Neuroscience. Advisor: Paul C. Letourn...
Netrins are a family of extracellular proteins that function as chemotropic guidance cues for migrat...
AbstractEmbryonic retinal ganglion cell (RGC) axons must extend toward and grow through the optic di...
Cell adhesion molecules play a central role in mediating axonal tract development within the nascent...