International audienceActin filaments generate mechanical forces that drive membrane movements during trafficking, endocytosis and cell migration. Reciprocally, adaptations of actin networks to forces regulate their assembly and architecture. Yet, a demonstration of forces acting on actin regulators at actin assembly sites in cells is missing. Here we show that local forces arising from actin filament elongation mechanically control WAVE regulatory complex (WRC) dynamics and function, that is, Arp2/3 complex activation in the lamellipodium. Single-protein tracking revealed WRC lateral movements along the lamellipodium tip, driven by elongation of actin filaments and correlating with WRC turnover. The use of optical tweezers to mechanically ...
<p>Background: Cells use filopodia to explore their environment and to form new adhesion conta...
International audienceCoordination between membrane trafficking and actin polymerization is fundamen...
BACKGROUND: In the cortical region of motile cells, the actin network rapidly reorganizes as require...
International audienceActin filaments generate mechanical forces that drive membrane movements durin...
Cell migration is an essential process, both in unicellular organisms such as amoeba and as individu...
YesCells migrating over 2D substrates are required to polymerise actin at the leading edge to form l...
Cell migration is initiated by lamellipodia-membrane-enclosed sheets of cytoplasm containing densely...
International audienceThe spatiotemporal coordination of actin regulators in the lamellipodium deter...
AbstractCellular lamellipodia bind to the matrix and probe its rigidity through forces generated by ...
Cell motility is an integrated process involved in critical phenomena such as axonal pathfinding and...
How local interactions of actin regulators yield large-scale organization of cell shape and movement...
AbstractLamellipodium extension, incorporating actin filament dynamics and the cell membrane, is sim...
Actin filaments polymerizing against membranes power endocytosis, vesicular traffic, and cell motili...
Lamellipodia are sheet-like protrusions formed during migration or phagocytosis and comprise a netwo...
AbstractBackground: In the cortical region of motile cells, the actin network rapidly reorganizes as...
<p>Background: Cells use filopodia to explore their environment and to form new adhesion conta...
International audienceCoordination between membrane trafficking and actin polymerization is fundamen...
BACKGROUND: In the cortical region of motile cells, the actin network rapidly reorganizes as require...
International audienceActin filaments generate mechanical forces that drive membrane movements durin...
Cell migration is an essential process, both in unicellular organisms such as amoeba and as individu...
YesCells migrating over 2D substrates are required to polymerise actin at the leading edge to form l...
Cell migration is initiated by lamellipodia-membrane-enclosed sheets of cytoplasm containing densely...
International audienceThe spatiotemporal coordination of actin regulators in the lamellipodium deter...
AbstractCellular lamellipodia bind to the matrix and probe its rigidity through forces generated by ...
Cell motility is an integrated process involved in critical phenomena such as axonal pathfinding and...
How local interactions of actin regulators yield large-scale organization of cell shape and movement...
AbstractLamellipodium extension, incorporating actin filament dynamics and the cell membrane, is sim...
Actin filaments polymerizing against membranes power endocytosis, vesicular traffic, and cell motili...
Lamellipodia are sheet-like protrusions formed during migration or phagocytosis and comprise a netwo...
AbstractBackground: In the cortical region of motile cells, the actin network rapidly reorganizes as...
<p>Background: Cells use filopodia to explore their environment and to form new adhesion conta...
International audienceCoordination between membrane trafficking and actin polymerization is fundamen...
BACKGROUND: In the cortical region of motile cells, the actin network rapidly reorganizes as require...