Key steps in regulating actin dynamics are the de novo nucleation and elongation of actin filaments, which can be catalysed by a limited number of proteins and protein complexes. Among these, Arp2/3 complex and formins are the best studied. Arp2/3-complex activity is controlled through signalling-dependent association with nucleation-promoting factors, such as the WASP/WAVE family proteins. A common theme for these molecules, which is well established for WAVEs but is only just beginning to emerge for WASPs, is that they act as coincident detectors of a variety of signalling pathways through the formation of large multi-molecular complexes
AbstractA variety of activators stimulate Arp2/3 complex to nucleate branched actin filament structu...
Arp2/3 complex nucleates branched actin networks that drive cell motility. It consists of seven prot...
In response to activation by WASP-family proteins, the Arp2/3 complex nucleates new actin filaments ...
The assembly of a branched network of actin filaments provides the mechanical propulsion that drives...
This chapter describes an actin assembly mediated by Arp2/3 complex and WASP family proteins. The Ar...
The dynamic polymerization of actin monomers into filament networks determines cell shape, directs i...
AbstractArp2/3 complex plays a key role in regulated actin polymerization. A recent study has reveal...
The actin-related protein 2/3 (Arp2/3) complex is the primary nucleator of new actin filaments in mo...
AbstractBackground: Assembly and organization of actin filaments are required for many cellular proc...
International audienceDuring branched actin assembly, several factors are necessary to activate the ...
Signal-dependent regulation of actin dynamics is essential for a variety of cellular processes, incl...
The actin cytoskeleton plays an essential role in numerous aspects of cell biology, such as cell mor...
SummaryThe Arp2/3 complex is a powerful nucleator of actin filaments when activated. A recent study ...
Actin nucleation is the key rate limiting step in the process of actin polymerization, and tight reg...
Arp2/3 complex nucleates branched actin networks that drive cell motility. It consists of seven prot...
AbstractA variety of activators stimulate Arp2/3 complex to nucleate branched actin filament structu...
Arp2/3 complex nucleates branched actin networks that drive cell motility. It consists of seven prot...
In response to activation by WASP-family proteins, the Arp2/3 complex nucleates new actin filaments ...
The assembly of a branched network of actin filaments provides the mechanical propulsion that drives...
This chapter describes an actin assembly mediated by Arp2/3 complex and WASP family proteins. The Ar...
The dynamic polymerization of actin monomers into filament networks determines cell shape, directs i...
AbstractArp2/3 complex plays a key role in regulated actin polymerization. A recent study has reveal...
The actin-related protein 2/3 (Arp2/3) complex is the primary nucleator of new actin filaments in mo...
AbstractBackground: Assembly and organization of actin filaments are required for many cellular proc...
International audienceDuring branched actin assembly, several factors are necessary to activate the ...
Signal-dependent regulation of actin dynamics is essential for a variety of cellular processes, incl...
The actin cytoskeleton plays an essential role in numerous aspects of cell biology, such as cell mor...
SummaryThe Arp2/3 complex is a powerful nucleator of actin filaments when activated. A recent study ...
Actin nucleation is the key rate limiting step in the process of actin polymerization, and tight reg...
Arp2/3 complex nucleates branched actin networks that drive cell motility. It consists of seven prot...
AbstractA variety of activators stimulate Arp2/3 complex to nucleate branched actin filament structu...
Arp2/3 complex nucleates branched actin networks that drive cell motility. It consists of seven prot...
In response to activation by WASP-family proteins, the Arp2/3 complex nucleates new actin filaments ...