
The regulation of growth cone actin dynamics is a critical aspect of axonal growth control. Among the proteins that are directly involved in the regulation of actin dynamics, actin nucleation factors play a pivotal role by promoting the formation of novel actin filaments. However, the essential nucleation factors in developing neurons have so far not been clearly identified. Here, we show expression data, and use true loss-of-function analysis and targeted expression of activated constructs to demonstrate that theDrosophilaforminDAAMplays a critical role in axonal morphogenesis. In agreement with this finding, we show that dDAAM is required for filopodia formation at axonal growth cones. Our genetic interaction, immunoprecipitation and protein localization studies argue that dDAAM acts in concert with Rac GTPases, Profilin and Enabled during axonal growth regulation. We also show that mouse Daam1 rescues the CNS defects observed indDAAMmutant flies to a high degree, and vice versa, thatDrosophilaDAAM induces the formation of neurite-like protrusions when expressed in mouse P19 cells, strongly suggesting that the function of DAAM in developing neurons has been conserved during evolution.
Central Nervous System, Male, Profilin, Neurogenesis, Growth Cones, Formin, Cell Line, Evolution, Molecular, Mice, Profilins, Neural Pathways, Neurites, Animals, Drosophila Proteins, Conserved Sequence, Adaptor Proteins, Signal Transducing, Filopodia formation, dDAAM, Ena, Axon growth, Rac, rac GTP-Binding Proteins, DNA-Binding Proteins, Actin Cytoskeleton, Drosophila melanogaster, Mutation, Female
Central Nervous System, Male, Profilin, Neurogenesis, Growth Cones, Formin, Cell Line, Evolution, Molecular, Mice, Profilins, Neural Pathways, Neurites, Animals, Drosophila Proteins, Conserved Sequence, Adaptor Proteins, Signal Transducing, Filopodia formation, dDAAM, Ena, Axon growth, Rac, rac GTP-Binding Proteins, DNA-Binding Proteins, Actin Cytoskeleton, Drosophila melanogaster, Mutation, Female
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