Cerebral Cortex · 2013 · 107 citations · 48 references
Axon GuidanceSlit2-mediated RepulsionCytoskeletonNeurotransmissionCellular NeurobiologyCellular PhysiologySocial SciencesNeuroregenerationCell InteractionGuidance MechanismsIntercellular CommunicationCell SignalingCallosal AxonsColorectal CancerNervous SystemCell BiologyDevelopmental BiologySignal TransductionNeuroanatomyPioneering AxonsNeuroscienceMolecular NeurobiologyCentral Nervous SystemMedicine
Commissural axons cross the midline during development guided by conserved molecules, but whether these cues operate similarly in the forebrain’s corpus callosum remains unclear. We found that Netrin‑1 attracts cingulate‑derived pioneering callosal axons but not the bulk neocortical axons, and that loss of Netrin‑1 removes Slit2 repulsion, enabling precrossing axons to reach and cross the midline, demonstrating integration of multiple guidance cues.
The left and right sides of the nervous system communicate via commissural axons that cross the midline during development using evolutionarily conserved molecules. These guidance cues have been particularly well studied in the mammalian spinal cord, but it remains unclear whether these guidance mechanisms for commissural axons are similar in the developing forebrain, in particular for the corpus callosum, the largest and most important commissure for cortical function. Here, we show that Netrin1 initially attracts callosal pioneering axons derived from the cingulate cortex, but surprisingly is not attractive for the neocortical callosal axons that make up the bulk of the projection. Instead, we show that Netrin-deleted in colorectal cancer signaling acts in a fundamentally different manner, to prevent the Slit2-mediated repulsion of precrossing axons thereby allowing them to approach and cross the midline. These results provide the first evidence for how callosal axons integrate multiple guidance cues to navigate the midline.
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Phenotype of mice lacking functional Deleted in colorectal cancer (Dec) gene
Amin Fazeli, Stephanie Dickinson, Michelle L. Hermiston et al. · Nature · 1997 · 768 citations