The cytoskeletal protein actin polymerizes into filaments that are essential for the mechanical stability of mammalian cells. In vitro experiments showed that direct interactions between actin filaments and lipid bilayers are possible and that the net charge of the bilayer as well as the presence of divalent ions in the buffer play an important role. In vivo, colocalization of actin filaments and divalent ions are suppressed, and cells rely on linker proteins to connect the plasma membrane to the actin network. Little is known, however, about why this is the case and what microscopic interactions are important. A deeper understanding is highly beneficial, first, to obtain understanding in the biological design of cells and, second, as a pos...
The actin cytoskeleton powers membrane deformation during many cellular processes, such as migration...
We report on the use of supported lipid bilayers to reveal dynamics of actin polymerization from a n...
Actin bundles are key factors in the mechanical support and dynamic reorganization of the cytoskelet...
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 dynamics and organization of the actin cytoskeleton are crucial to many cellular events such as ...
The binding of polymerised actin-a prototype of semi-flexible macromolecule-to lipid monolayers is s...
The eukaryotic cell membrane is connected to a dense actin rich cortex. We present FCS and STED expe...
The eukaryotic cell membrane is connected to a dense actin rich cortex. We present FCS and STED expe...
SummaryUnderstanding how functional lipid domains in live cell membranes are generated has posed a c...
AbstractWe report on the use of supported lipid bilayers to reveal dynamics of actin polymerization ...
The actin cytoskeleton powers membrane deformation during many cellular processes, such as migration...
The actin cytoskeleton powers membrane deformation during many cellular processes, such as migration...
We report on the use of supported lipid bilayers to reveal dynamics of actin polymerization from a n...
Actin bundles are key factors in the mechanical support and dynamic reorganization of the cytoskelet...
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 dynamics and organization of the actin cytoskeleton are crucial to many cellular events such as ...
The binding of polymerised actin-a prototype of semi-flexible macromolecule-to lipid monolayers is s...
The eukaryotic cell membrane is connected to a dense actin rich cortex. We present FCS and STED expe...
The eukaryotic cell membrane is connected to a dense actin rich cortex. We present FCS and STED expe...
SummaryUnderstanding how functional lipid domains in live cell membranes are generated has posed a c...
AbstractWe report on the use of supported lipid bilayers to reveal dynamics of actin polymerization ...
The actin cytoskeleton powers membrane deformation during many cellular processes, such as migration...
The actin cytoskeleton powers membrane deformation during many cellular processes, such as migration...
We report on the use of supported lipid bilayers to reveal dynamics of actin polymerization from a n...
Actin bundles are key factors in the mechanical support and dynamic reorganization of the cytoskelet...