We report on the use of supported lipid bilayers to reveal dynamics of actin polymerization from a nonpolymerizing subphase via cationic phospholipids. Using varying fractions of charged lipid, lipid mobility, and buffer conditions, we show that dynamics at the nanoscale can be used to control the self-assembly of these structures. In the case of fluid-phase lipid bilayers, the actin adsorbs to form a uniform two-dimensional layer with complete surface coverage whereas gel-phase bilayers induce a network of randomly oriented actin filaments, of lower coverage. Reducing the pH increased the polymerization rate, the number of nucleation events, and the total coverage of actin. A model of the adsorption/diffusion process is developed to provid...
The cytoskeletal protein actin polymerizes into filaments that are essential for the mechanical stab...
Liquid–liquid phase separation driven by weak interactions between multivalent molecules contributes...
Liquid–liquid phase separation driven by weak interactions between multivalent molecules contributes...
AbstractWe report on the use of supported lipid bilayers to reveal dynamics of actin polymerization ...
AbstractWe report on the use of supported lipid bilayers to reveal dynamics of actin polymerization ...
AbstractLiving cells contain a very large amount of membrane surface area, which potentially influen...
Living cells contain a very targe amount of membrane surface area, which potentially influences the ...
AbstractLiving cells contain a very large amount of membrane surface area, which potentially influen...
AbstractPhospholipid vesicles containing ponticulin have been used to form solid supported and tethe...
AbstractThe formation of biomimetic lipid membranes has the potential to provide insights into cellu...
The cytoskeletal protein actin polymerizes into filaments that are essential for the mechanical stab...
The cytoskeletal protein actin polymerizes into filaments that are essential for the mechanical stab...
The cytoskeletal protein actin polymerizes into filaments that are essential for the mechanical stab...
The cytoskeletal protein actin polymerizes into filaments that are essential for the mechanical stab...
The cytoskeletal protein actin polymerizes into filaments that are essential for the mechanical stab...
The cytoskeletal protein actin polymerizes into filaments that are essential for the mechanical stab...
Liquid–liquid phase separation driven by weak interactions between multivalent molecules contributes...
Liquid–liquid phase separation driven by weak interactions between multivalent molecules contributes...
AbstractWe report on the use of supported lipid bilayers to reveal dynamics of actin polymerization ...
AbstractWe report on the use of supported lipid bilayers to reveal dynamics of actin polymerization ...
AbstractLiving cells contain a very large amount of membrane surface area, which potentially influen...
Living cells contain a very targe amount of membrane surface area, which potentially influences the ...
AbstractLiving cells contain a very large amount of membrane surface area, which potentially influen...
AbstractPhospholipid vesicles containing ponticulin have been used to form solid supported and tethe...
AbstractThe formation of biomimetic lipid membranes has the potential to provide insights into cellu...
The cytoskeletal protein actin polymerizes into filaments that are essential for the mechanical stab...
The cytoskeletal protein actin polymerizes into filaments that are essential for the mechanical stab...
The cytoskeletal protein actin polymerizes into filaments that are essential for the mechanical stab...
The cytoskeletal protein actin polymerizes into filaments that are essential for the mechanical stab...
The cytoskeletal protein actin polymerizes into filaments that are essential for the mechanical stab...
The cytoskeletal protein actin polymerizes into filaments that are essential for the mechanical stab...
Liquid–liquid phase separation driven by weak interactions between multivalent molecules contributes...
Liquid–liquid phase separation driven by weak interactions between multivalent molecules contributes...