SummarySoluble guidance cues can direct cellular protrusion and migration by modulating adhesion and cytoskeletal dynamics. Actin filaments (F-actins) polymerize at the leading edge of motile cells and depolymerize proximally [1, 2]; this, together with myosin II activity, induces retrograde flow of F-actins [3-5]. It has been proposed that the traction forces underlying cellular motility may be regulated by the modulation of coupling efficiency between F-actin flow and the extracellular substrate via “clutch” molecules [6-10]. However, how cell signaling controls the coupling efficiency remains unknown. Shootin1 functions as a linker molecule that couples F-actin retrograde flow and the substrate at neuronal growth cones to promote axon ou...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
Actin polymerizes near the leading edge of nerve growth cones, and actin filaments show retrograde m...
To establish functional networks, neurons must migrate to their appropriate destinations and then ex...
SummarySoluble guidance cues can direct cellular protrusion and migration by modulating adhesion and...
Soluble guidance cues can direct cellular protrusion and migration by modulating adhesion and cytosk...
Motile cells transduce environmental chemical signals into mechanical forces to achieve properly con...
Growth cones navigate axonal projection in response to guidance cues. However, it is unclear how the...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
Growth cones navigate axonal projection in response to guidance cues. However, it is unclear how the...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
Actin polymerizes near the leading edge of nerve growth cones, and actin filaments show retrograde m...
To establish functional networks, neurons must migrate to their appropriate destinations and then ex...
SummarySoluble guidance cues can direct cellular protrusion and migration by modulating adhesion and...
Soluble guidance cues can direct cellular protrusion and migration by modulating adhesion and cytosk...
Motile cells transduce environmental chemical signals into mechanical forces to achieve properly con...
Growth cones navigate axonal projection in response to guidance cues. However, it is unclear how the...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
Growth cones navigate axonal projection in response to guidance cues. However, it is unclear how the...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
The growth cone, a motile structure located at the tip of growing axons, senses extracellular guidan...
Actin polymerizes near the leading edge of nerve growth cones, and actin filaments show retrograde m...
To establish functional networks, neurons must migrate to their appropriate destinations and then ex...