Science Advances · 2022 · 19 citations · 35 references
Synaptic TransmissionCytoskeletonNeurotransmissionCellular NeurobiologySynaptic SignalingCellular PhysiologySocial SciencesBiophysicsMicrotubule Network MobilityMolecular NeuroscienceCell PolarityLocal ChangesCell BiologyDevelopmental BiologyNeuronal NetworkMicrotubule Network FlowCell MotilityNeuroscienceIntracellular TraffickingAxon SpecificationMicrotubule MobilityMedicine
The polarization of neurons into axons and dendrites depends on extracellular cues, intracellular signaling, cytoskeletal rearrangements, and polarized transport, but the interplay between these processes during polarization remains unresolved. Here, we show that axon specification is determined by differences in microtubule network mobility between neurites, regulated by Rho guanosine triphosphatases (GTPases) and extracellular cues. In developing neurons, retrograde microtubule flow prevents the entry of the axon-selective motor protein Kinesin-1 into most neurites. Using inducible assays to control microtubule network flow, we demonstrate that local inhibition of microtubule mobility is sufficient to guide Kinesin-1 into a specific neurite, whereas long-term global inhibition induces the formation of multiple axons. We furthermore show that extracellular mechanical cues and intracellular Rho GTPase signaling control the local differences in microtubule network flow. These results reveal a novel cytoskeletal mechanism for neuronal polarization.
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A bright monomeric green fluorescent protein derived from Branchiostoma lanceolatum
Nathan C. Shaner, Gerard G. Lambert, Andrew Chammas et al. · Nature Methods · 2013 · 1.4K citations · Full text
A structural change in the kinesin motor protein that drives motility
Sarah E. Rice, Abel W. Lin, Daniel Safer et al. · Nature · 1999 · 804 citations
Protein Function, Kinesin Motor Protein, Macromolecular Machine +7