International audienceThe actin regulatory protein, cofilin, increases the bending and twisting elasticity of actin filaments and severs them. It has been proposed that filaments partially decorated with cofilin accumulate stress from thermally driven shape fluctuations at bare (stiff) and decorated (compliant) boundaries, thereby promoting severing. This mechanics-based severing model predicts that changes in actin filament compliance due to cofilin binding affect severing activity. Here, we test this prediction by evaluating how the severing activities of vertebrate and yeast cofilactin scale with the flexural rigidities determined from analysis of shape fluctuations. Yeast actin filaments are more compliant in bending than vertebrate act...
International audienceActin polymerization powers the directed motility of eukaryotic cells. Sustain...
International audienceActin polymerization powers the directed motility of eukaryotic cells. Sustain...
International audienceThe dynamic remodeling of actin cytoskeleton drives cell movement. The essenti...
International audienceThe actin regulatory protein, cofilin, increases the bending and twisting elas...
AbstractThe actin regulatory protein, cofilin, increases the bending and twisting elasticity of acti...
AbstractThe actin regulatory protein, cofilin, increases the bending and twisting elasticity of acti...
Central to cell motility is the actin filament severing activity of cofilin, which is essential to t...
International audienceComputational and structural studies have been indispensable in investigating ...
International audienceWe determined the flexural (bending) rigidities of actin and cofilactin filame...
International audienceWe determined the flexural (bending) rigidities of actin and cofilactin filame...
International audienceComputational and structural studies have been indispensable in investigating ...
International audienceWe determined the flexural (bending) rigidities of actin and cofilactin filame...
International audienceWe determined the flexural (bending) rigidities of actin and cofilactin filame...
International audienceWe determined the flexural (bending) rigidities of actin and cofilactin filame...
AbstractThe continuous assembly and disassembly of actin filament networks is vital for cellular pro...
International audienceActin polymerization powers the directed motility of eukaryotic cells. Sustain...
International audienceActin polymerization powers the directed motility of eukaryotic cells. Sustain...
International audienceThe dynamic remodeling of actin cytoskeleton drives cell movement. The essenti...
International audienceThe actin regulatory protein, cofilin, increases the bending and twisting elas...
AbstractThe actin regulatory protein, cofilin, increases the bending and twisting elasticity of acti...
AbstractThe actin regulatory protein, cofilin, increases the bending and twisting elasticity of acti...
Central to cell motility is the actin filament severing activity of cofilin, which is essential to t...
International audienceComputational and structural studies have been indispensable in investigating ...
International audienceWe determined the flexural (bending) rigidities of actin and cofilactin filame...
International audienceWe determined the flexural (bending) rigidities of actin and cofilactin filame...
International audienceComputational and structural studies have been indispensable in investigating ...
International audienceWe determined the flexural (bending) rigidities of actin and cofilactin filame...
International audienceWe determined the flexural (bending) rigidities of actin and cofilactin filame...
International audienceWe determined the flexural (bending) rigidities of actin and cofilactin filame...
AbstractThe continuous assembly and disassembly of actin filament networks is vital for cellular pro...
International audienceActin polymerization powers the directed motility of eukaryotic cells. Sustain...
International audienceActin polymerization powers the directed motility of eukaryotic cells. Sustain...
International audienceThe dynamic remodeling of actin cytoskeleton drives cell movement. The essenti...