SummaryBackgroundActin-based cell motility is fundamental for development, function, and malignant events in eukaryotic organisms. During neural development, axonal growth cones depend on rapid assembly and disassembly of actin filaments (F-actin) for their guided extension to specific targets for wiring. Monomeric globular actin (G-actin) is the building block for F-actin but is not considered to play a direct role in spatiotemporal control of actin dynamics in cell motility.ResultsHere we report that a pool of G-actin dynamically localizes to the leading edge of growth cones and neuroblastoma cells to spatially elevate the G-/F-actin ratio that drives membrane protrusion and cell movement. Loss of G-actin localization leads to the cessati...
During nervous system development, growing axons need to be directed to an appropriate target area i...
University of Minnesota Ph.D. dissertation. June 2010. Major: Neuroscience. Advisor: Paul C. Letourn...
The balance of actin filament polymerization and depolymerization maintains a steady state network t...
SummaryBackgroundActin-based cell motility is fundamental for development, function, and malignant e...
Background Actin-based cell motility is fundamental for development, function, and malignant events ...
Actin-based motility is critical for nervous system development. Both the migration of neurons and t...
AbstractA growth cone is a motile structure at the tips of axons that is driven by the actin network...
Growth cones on neuronal process navigate over long distances to their targets in the developing ner...
Actin and actin-associated proteins migrate within various cell types. To uncover the mechanism of t...
SummaryActin and actin-associated proteins migrate within various cell types. To uncover the mechani...
Sensory-motile cells fulfill various biological functions ranging from immune activity or wound heal...
AbstractActin filaments assembled at the leading edge of neuronal growth cones are centripetally tra...
AbstractIn a previous study, F-actin appeared to play a key role in guiding microtubules during grow...
Cell migration is a ubiquitous process underlying critical biological mechanisms like wound healing,...
AbstractAnimal cells can change shape and move by using actin polymerization to drive plasma membran...
During nervous system development, growing axons need to be directed to an appropriate target area i...
University of Minnesota Ph.D. dissertation. June 2010. Major: Neuroscience. Advisor: Paul C. Letourn...
The balance of actin filament polymerization and depolymerization maintains a steady state network t...
SummaryBackgroundActin-based cell motility is fundamental for development, function, and malignant e...
Background Actin-based cell motility is fundamental for development, function, and malignant events ...
Actin-based motility is critical for nervous system development. Both the migration of neurons and t...
AbstractA growth cone is a motile structure at the tips of axons that is driven by the actin network...
Growth cones on neuronal process navigate over long distances to their targets in the developing ner...
Actin and actin-associated proteins migrate within various cell types. To uncover the mechanism of t...
SummaryActin and actin-associated proteins migrate within various cell types. To uncover the mechani...
Sensory-motile cells fulfill various biological functions ranging from immune activity or wound heal...
AbstractActin filaments assembled at the leading edge of neuronal growth cones are centripetally tra...
AbstractIn a previous study, F-actin appeared to play a key role in guiding microtubules during grow...
Cell migration is a ubiquitous process underlying critical biological mechanisms like wound healing,...
AbstractAnimal cells can change shape and move by using actin polymerization to drive plasma membran...
During nervous system development, growing axons need to be directed to an appropriate target area i...
University of Minnesota Ph.D. dissertation. June 2010. Major: Neuroscience. Advisor: Paul C. Letourn...
The balance of actin filament polymerization and depolymerization maintains a steady state network t...