AbstractThe Rho GTPases Rac1 and Cdc42 have been implicated in the regulation of axon outgrowth and guidance. However, the downstream effector pathways through which these GTPases exert their effects on axon development are not well characterized. Here, we report that axon outgrowth defects within specific subsets of motoneurons expressing constitutively active Drosophila Rac1 largely persist even with the addition of an effector-loop mutation to Rac1 that disrupts its ability to bind to p21-activated kinase (Pak) and other Cdc42/Rac1 interactive-binding (CRIB)-motif effector proteins. While hyperactivation of Pak itself does not lead to axon outgrowth defects as when Rac1 is constitutively activated, live analysis reveals that it can alter...
The formation and elaboration of axonal and dendritic morphologies are fundamental aspects of neuron...
We are interested in understanding the molecular mechanisms that govern synaptic growth and plastici...
RAC1 is a highly conserved Rho GTPase critical for many cellular and developmental processes. De nov...
AbstractThe Rho GTPases Rac1 and Cdc42 have been implicated in the regulation of axon outgrowth and ...
AbstractRho GTPases are essential regulators of cytoskeletal reorganization, but how they do so duri...
AbstractRho family GTPases are ideal candidates to regulate aspects of cytoskeletal dynamics downstr...
AbstractRecent analysis of Rho subfamily GTPases in Drosophila revealed roles for Rac and Cdc42 duri...
The mechanisms linking guidance receptors to cytoskeletal dynamics in the growth cone during axon ex...
The mechanisms linking guidance receptors to cytoskeletal dynamics in the growth cone during axon ex...
Dendritogenesis, axonogenesis, pathfinding, and target recognition are all affected in distinct ways...
AbstractMechanisms that regulate axon branch stability are largely unknown. Genome-wide analyses of ...
AbstractRho GTPases are essential regulators of cytoskeletal reorganization, but how they do so duri...
AbstractRho family GTPases are ideal candidates to regulate aspects of cytoskeletal dynamics downstr...
The molecular mechanisms leading to axonal guidance are vital for the proper wiring of the nervous s...
The molecular mechanisms leading to axonal guidance are vital for the proper wiring of the nervous s...
The formation and elaboration of axonal and dendritic morphologies are fundamental aspects of neuron...
We are interested in understanding the molecular mechanisms that govern synaptic growth and plastici...
RAC1 is a highly conserved Rho GTPase critical for many cellular and developmental processes. De nov...
AbstractThe Rho GTPases Rac1 and Cdc42 have been implicated in the regulation of axon outgrowth and ...
AbstractRho GTPases are essential regulators of cytoskeletal reorganization, but how they do so duri...
AbstractRho family GTPases are ideal candidates to regulate aspects of cytoskeletal dynamics downstr...
AbstractRecent analysis of Rho subfamily GTPases in Drosophila revealed roles for Rac and Cdc42 duri...
The mechanisms linking guidance receptors to cytoskeletal dynamics in the growth cone during axon ex...
The mechanisms linking guidance receptors to cytoskeletal dynamics in the growth cone during axon ex...
Dendritogenesis, axonogenesis, pathfinding, and target recognition are all affected in distinct ways...
AbstractMechanisms that regulate axon branch stability are largely unknown. Genome-wide analyses of ...
AbstractRho GTPases are essential regulators of cytoskeletal reorganization, but how they do so duri...
AbstractRho family GTPases are ideal candidates to regulate aspects of cytoskeletal dynamics downstr...
The molecular mechanisms leading to axonal guidance are vital for the proper wiring of the nervous s...
The molecular mechanisms leading to axonal guidance are vital for the proper wiring of the nervous s...
The formation and elaboration of axonal and dendritic morphologies are fundamental aspects of neuron...
We are interested in understanding the molecular mechanisms that govern synaptic growth and plastici...
RAC1 is a highly conserved Rho GTPase critical for many cellular and developmental processes. De nov...