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Blanchoin, L. et al. Direct observation of dendritic actin filament networks nucleated by Arp2/3 complex and WASP/Scar proteins.
Cui, H. et al. Spontaneous and x-ray triggered crystallization at long range in self-assembling filament networks.
Interestingly, mesh size was not altered for the mutant filament networks, except for the mutant DesR454W, which apparently did not form proper filament networks.
The mechanical properties of epithelial cells are modulated by structural changes in keratin intermediate filament networks.
Keratin intermediate filament networks are part of the cytoskeleton in epithelial cells.
Many questions still remain to be addressed: is the molecular structure of lamin B filament networks distinct in cLADs and eLADs?
Through this association, GMF catalyzes the debranching of actin filament networks and inhibits actin nucleation by Arp2/3 complex.
Several classes of proteins are known to assemble new filaments, including the Arp2/3 complex, which creates branched filament networks, and Spire, which creates unbranched filaments.
Cooperation of ADF/cofilin with Aip1 is necessary to trigger the full disassembly of all actin filament networks.
The spatial distribution of network mesh size, which strongly influences the mechanical characteristics of filament networks, is modulated by lateral annealing processes.
This mechanism which is a specific feature of intermediate filament networks appears to be a major and fast regulator of cell mechanics.
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