AbstractRho GTPases are essential regulators of cytoskeletal reorganization, but how they do so during neuronal morphogenesis in vivo is poorly understood. Here we show that the actin depolymerization factor cofilin is essential for axon growth in Drosophila neurons. Cofilin function in axon growth is inhibited by LIM kinase and activated by Slingshot phosphatase. Dephosphorylating cofilin appears to be the major function of Slingshot in regulating axon growth in vivo. Genetic data provide evidence that Rho or Rac/Cdc42, via effector kinases Rok or Pak, respectively, activate LIM kinase to inhibit axon growth. Importantly, Rac also activates a Pak-independent pathway that promotes axon growth, and different RacGEFs regulate these distinct p...
The establishment of precise neuronal cell morphology provides the foundation for all aspects of neu...
The establishment of precise neuronal cell morphology provides the foundation for all aspects of neu...
AbstractHow actin dynamics might be regulated to generate specific cellular structures during develo...
AbstractRho GTPases are essential regulators of cytoskeletal reorganization, but how they do so duri...
AbstractThe Rho GTPases Rac1 and Cdc42 have been implicated in the regulation of axon outgrowth and ...
AbstractRho family GTPases are ideal candidates to regulate aspects of cytoskeletal dynamics downstr...
AbstractThe Rho GTPases Rac1 and Cdc42 have been implicated in the regulation of axon outgrowth and ...
AbstractRecent analysis of Rho subfamily GTPases in Drosophila revealed roles for Rac and Cdc42 duri...
AbstractMechanisms that regulate axon branch stability are largely unknown. Genome-wide analyses of ...
Actin-based motility is critical for nervous system development. Both the migration of neurons and t...
AbstractRho family GTPases are ideal candidates to regulate aspects of cytoskeletal dynamics downstr...
The formation and elaboration of axonal and dendritic morphologies are fundamental aspects of neuron...
AbstractProper development of neurons depends on synaptic activity, but the mechanisms of activity-d...
Axonal branching is an essential mechanism in nervous system function, as it allows a single neuron ...
AbstractWe tested the contribution of the small GTPase Rho and its downstream target p160ROCK during...
The establishment of precise neuronal cell morphology provides the foundation for all aspects of neu...
The establishment of precise neuronal cell morphology provides the foundation for all aspects of neu...
AbstractHow actin dynamics might be regulated to generate specific cellular structures during develo...
AbstractRho GTPases are essential regulators of cytoskeletal reorganization, but how they do so duri...
AbstractThe Rho GTPases Rac1 and Cdc42 have been implicated in the regulation of axon outgrowth and ...
AbstractRho family GTPases are ideal candidates to regulate aspects of cytoskeletal dynamics downstr...
AbstractThe Rho GTPases Rac1 and Cdc42 have been implicated in the regulation of axon outgrowth and ...
AbstractRecent analysis of Rho subfamily GTPases in Drosophila revealed roles for Rac and Cdc42 duri...
AbstractMechanisms that regulate axon branch stability are largely unknown. Genome-wide analyses of ...
Actin-based motility is critical for nervous system development. Both the migration of neurons and t...
AbstractRho family GTPases are ideal candidates to regulate aspects of cytoskeletal dynamics downstr...
The formation and elaboration of axonal and dendritic morphologies are fundamental aspects of neuron...
AbstractProper development of neurons depends on synaptic activity, but the mechanisms of activity-d...
Axonal branching is an essential mechanism in nervous system function, as it allows a single neuron ...
AbstractWe tested the contribution of the small GTPase Rho and its downstream target p160ROCK during...
The establishment of precise neuronal cell morphology provides the foundation for all aspects of neu...
The establishment of precise neuronal cell morphology provides the foundation for all aspects of neu...
AbstractHow actin dynamics might be regulated to generate specific cellular structures during develo...