AbstractActin filament dynamics at the cell membrane are important for cell-matrix and cell-cell adhesions and the protrusion of the leading edge. Since actin filaments must be connected to the cell membrane to exert forces but must also detach from the membrane to allow it to move and evolve, the balance between actin filament tethering and detachment at adhesion sites and the leading edge is key for cell shape changes and motility. How this fine tuning is performed in cells remains an open question, but possible candidates are the Drosophila enabled/vasodilator-stimulated phosphoprotein (Ena/VASP) family of proteins, which localize to dynamic actin structures in the cell. Here we study VASP-mediated actin-related proteins 2/3 (Arp2/3) com...
Members of the vasodilator-stimulated phosphoprotein (VASP) family are important regulators of actin...
AbstractSpatially controlled assembly of actin in branched filaments generates cell protrusions or t...
SummaryActin filament networks exert protrusive and attachment forces on membranes and thereby drive...
AbstractActin filament dynamics at the cell membrane are important for cell-matrix and cell-cell adh...
We study the influence of the VASP protein on dynamics and mechanics of the actin networks that driv...
AbstractAssembly of branched actin filament networks at the leading edge of migrating cells requires...
Vasodilator-stimulated phosphoprotein (VASP) is a key regulator of dynamic actin structures like fil...
Filopodia are actin-based cell extensions that contribute to cell adhesion and spreading. The cytosk...
AbstractCell motility requires lamellipodial protrusion, a process driven by actin polymerization. E...
AbstractThe vasodilator-stimulated phosphoprotein (VASP) functions as a cellular regulator of actin ...
Vasodilator-stimulated phosphoprotein (Ena/ VASP) is an actin binding protein, important for actin d...
AbstractModulating the concentration of the actin-binding protein Ena/Vasp within the lamellipodium ...
SummaryEna/VASP proteins and the WAVE regulatory complex (WRC) regulate cell motility by virtue of t...
AbstractFor cells, the growth of a dense array of branched actin filaments organized by the actin-re...
Vasodilator-stimulated phosphoprotein (VASP) can catalyze actin polymerization by elongating actin f...
Members of the vasodilator-stimulated phosphoprotein (VASP) family are important regulators of actin...
AbstractSpatially controlled assembly of actin in branched filaments generates cell protrusions or t...
SummaryActin filament networks exert protrusive and attachment forces on membranes and thereby drive...
AbstractActin filament dynamics at the cell membrane are important for cell-matrix and cell-cell adh...
We study the influence of the VASP protein on dynamics and mechanics of the actin networks that driv...
AbstractAssembly of branched actin filament networks at the leading edge of migrating cells requires...
Vasodilator-stimulated phosphoprotein (VASP) is a key regulator of dynamic actin structures like fil...
Filopodia are actin-based cell extensions that contribute to cell adhesion and spreading. The cytosk...
AbstractCell motility requires lamellipodial protrusion, a process driven by actin polymerization. E...
AbstractThe vasodilator-stimulated phosphoprotein (VASP) functions as a cellular regulator of actin ...
Vasodilator-stimulated phosphoprotein (Ena/ VASP) is an actin binding protein, important for actin d...
AbstractModulating the concentration of the actin-binding protein Ena/Vasp within the lamellipodium ...
SummaryEna/VASP proteins and the WAVE regulatory complex (WRC) regulate cell motility by virtue of t...
AbstractFor cells, the growth of a dense array of branched actin filaments organized by the actin-re...
Vasodilator-stimulated phosphoprotein (VASP) can catalyze actin polymerization by elongating actin f...
Members of the vasodilator-stimulated phosphoprotein (VASP) family are important regulators of actin...
AbstractSpatially controlled assembly of actin in branched filaments generates cell protrusions or t...
SummaryActin filament networks exert protrusive and attachment forces on membranes and thereby drive...