AbstractCell migration is driven by actin polymerization at the leading edge of lamellipodia, where WASP family verprolin-homologous proteins (WAVEs) activate Arp2/3 complex. When fibroblasts are stimulated with PDGF, formation of peripheral ruffles precedes that of dorsal ruffles in lamellipodia. Here, we show that WAVE2 deficiency impairs peripheral ruffle formation and WAVE1 deficiency impairs dorsal ruffle formation. During directed cell migration in the absence of extracellular matrix (ECM), cells migrate with peripheral ruffles at the leading edge and WAVE2, but not WAVE1, is essential. In contrast, both WAVE1 and WAVE2 are essential for invading migration into ECM, suggesting that the leading edge in ECM has characteristics of both r...
<p>Background: The Scar/WAVE regulatory complex (WRC) drives lamellipodia assembly via the Arp...
Abstract Branched actin networks polymerized by the Arp2/3 complex are critical for cell migration. ...
How local interactions of actin regulators yield large-scale organization of cell shape and movement...
AbstractCell migration is driven by actin polymerization at the leading edge of lamellipodia, where ...
YesCells migrating over 2D substrates are required to polymerise actin at the leading edge to form l...
Membrane protrusions at the leading edge of cells, known as lamellipodia, drive cell migration in ma...
International audienceCell migration requires the generation of branched actin networks that power t...
International audienceCell migration requires the generation of branched actin networks that power t...
SCAR/WAVE proteins and Arp2/3 complex assemble branched actin networks at the leading edge. Two isof...
During cell spreading, mammalian cells migrate using lamellipodia formed from a large dense branched...
Abstract The RAC1-WAVE-Arp2/3 signaling pathway generates branched actin networks that power lamelli...
<div><p>The spatial distribution of signals downstream from receptor tyrosine kinases (RTKs) or G-pr...
The spatial distribution of signals downstream from receptor tyrosine kinases (RTKs) or G-protein co...
International audienceThe RAC1-WAVE-Arp2/3 signaling pathway generates branched actin networks that ...
SummaryBackgroundThe Scar/WAVE regulatory complex (WRC) drives lamellipodia assembly via the Arp2/3 ...
<p>Background: The Scar/WAVE regulatory complex (WRC) drives lamellipodia assembly via the Arp...
Abstract Branched actin networks polymerized by the Arp2/3 complex are critical for cell migration. ...
How local interactions of actin regulators yield large-scale organization of cell shape and movement...
AbstractCell migration is driven by actin polymerization at the leading edge of lamellipodia, where ...
YesCells migrating over 2D substrates are required to polymerise actin at the leading edge to form l...
Membrane protrusions at the leading edge of cells, known as lamellipodia, drive cell migration in ma...
International audienceCell migration requires the generation of branched actin networks that power t...
International audienceCell migration requires the generation of branched actin networks that power t...
SCAR/WAVE proteins and Arp2/3 complex assemble branched actin networks at the leading edge. Two isof...
During cell spreading, mammalian cells migrate using lamellipodia formed from a large dense branched...
Abstract The RAC1-WAVE-Arp2/3 signaling pathway generates branched actin networks that power lamelli...
<div><p>The spatial distribution of signals downstream from receptor tyrosine kinases (RTKs) or G-pr...
The spatial distribution of signals downstream from receptor tyrosine kinases (RTKs) or G-protein co...
International audienceThe RAC1-WAVE-Arp2/3 signaling pathway generates branched actin networks that ...
SummaryBackgroundThe Scar/WAVE regulatory complex (WRC) drives lamellipodia assembly via the Arp2/3 ...
<p>Background: The Scar/WAVE regulatory complex (WRC) drives lamellipodia assembly via the Arp...
Abstract Branched actin networks polymerized by the Arp2/3 complex are critical for cell migration. ...
How local interactions of actin regulators yield large-scale organization of cell shape and movement...