The actin cytoskeleton and associated motor proteins provide the driving forces for establishing the astonishing morphological diversity and dynamics of mammalian cells. Aside from functions in protruding and contracting cell membranes for motility, differentiation or cell division, the actin cytoskeleton provides forces to shape and move intracellular membranes of organelles and vesicles. To establish the many different actin assembly functions required in time and space, actin nucleators are targeted to specific subcellular compartments, thereby restricting the generation of specific actin filament structures to those sites. Recent research has revealed that targeting and activation of actin filament nucleators, elongators and myosin moto...
<div><p>The different actin structures governing eukaryotic cell shape and movement are not only det...
Abstract Actin cytoskeleton remodeling, which drives changes in cell shape and motility, is orchestr...
International audienceThe different actin structures governing eukaryotic cell shape and movement ar...
The actin cytoskeleton and associated motor proteins provide the driving forces for establishing the...
Eukaryotic cells generate a diversity of actin filament networks in a common cytoplasm to optimally ...
SummaryActin assembly proteins initiate the formation of diverse cytoskeletal structures in a single...
The actin cytoskeleton is essential for maintaining mechanical integrity of cells and tissues and fo...
Life implies motion. In cells, protein-based active molecular machines drive cell locomotion and int...
Actin is one of the most abundant proteins in eukaryotes. Discovered in muscle and described as far ...
Dynamic assembly of actin filaments generates the forces supporting cell motility. Several recent bi...
International audienceTight coupling between biochemical and mechanical properties of the actin cyto...
Mechanical forces play a crucial role in cell functions. Cells can generate force, change their shap...
SummaryTwo recent studies highlight how tandems of previously described actin nucleators collaborate...
The organization of actin filaments into higher-ordered structures governs eukaryotic cell shape and...
International audienceTwo recent studies highlight how tandems of previously described actin nucleat...
<div><p>The different actin structures governing eukaryotic cell shape and movement are not only det...
Abstract Actin cytoskeleton remodeling, which drives changes in cell shape and motility, is orchestr...
International audienceThe different actin structures governing eukaryotic cell shape and movement ar...
The actin cytoskeleton and associated motor proteins provide the driving forces for establishing the...
Eukaryotic cells generate a diversity of actin filament networks in a common cytoplasm to optimally ...
SummaryActin assembly proteins initiate the formation of diverse cytoskeletal structures in a single...
The actin cytoskeleton is essential for maintaining mechanical integrity of cells and tissues and fo...
Life implies motion. In cells, protein-based active molecular machines drive cell locomotion and int...
Actin is one of the most abundant proteins in eukaryotes. Discovered in muscle and described as far ...
Dynamic assembly of actin filaments generates the forces supporting cell motility. Several recent bi...
International audienceTight coupling between biochemical and mechanical properties of the actin cyto...
Mechanical forces play a crucial role in cell functions. Cells can generate force, change their shap...
SummaryTwo recent studies highlight how tandems of previously described actin nucleators collaborate...
The organization of actin filaments into higher-ordered structures governs eukaryotic cell shape and...
International audienceTwo recent studies highlight how tandems of previously described actin nucleat...
<div><p>The different actin structures governing eukaryotic cell shape and movement are not only det...
Abstract Actin cytoskeleton remodeling, which drives changes in cell shape and motility, is orchestr...
International audienceThe different actin structures governing eukaryotic cell shape and movement ar...