International audienceThe actin cytoskeleton plays crucial roles in cell morphogenesis and functions. The main partners of cortical actin are molecular motors of the myosin superfamily. Although our understanding of myosin functions is heavily based on myosin-II and its ability to dimerize, the largest and most ancient class is represented by myosin-I. Class 1 myosins are monomeric, actin-based motors that regulate a wide spectrum of functions, and whose dysregulation mediates multiple human diseases. We highlight the current challenges in identifying the “pantograph” for myosin-I motors: we need to reveal how conformational changes of myosin-I motors lead to diverse cellular as well as multicellular phenotypes. We review several mechanisms...
Myosin II, the myosin which has provided the most biochemical and structural data, is dimeric consis...
Mechanical forces play a crucial role in cell functions. Cells can generate force, change their shap...
Myosins are actin-dependent molecular motors which convert chemical energy from ATP hydrolysis into ...
International audienceThe actin cytoskeleton plays crucial roles in cell morphogenesis and functions...
The actin cytoskeleton plays crucial roles in cell morphogenesis and functions. The main partners of...
Since the discoveries of class I myosins, the first non-muscle myosins, about 30 years ago, their hi...
The organization of actin filaments into higher-ordered structures governs eukaryotic cell shape and...
The use of micropatterned substrates to control actin network self-assembly is protected by patent E...
The use of micropatterned substrates to control actin network self-assembly is protected by patent E...
Ever since the discovery of class I myosins, the first nonmuscle myosins, about 30 years ago, the hi...
SummaryUnlike a static and immobile skeleton, the actin cytoskeleton is a highly dynamic network of ...
Dynamic reorganization of the actomyosin cytoskeleton allows fast modulation of the cell surface, wh...
AbstractClass 1 myosins are monomeric motor proteins that fulfill diverse functions at the membrane/...
Dynamic reorganization of the actomyosin cytoskeleton allows fast modulation of the cell surface, wh...
Mechanical forces play a crucial role in cell functions. Cells can generate force, change their shap...
Myosin II, the myosin which has provided the most biochemical and structural data, is dimeric consis...
Mechanical forces play a crucial role in cell functions. Cells can generate force, change their shap...
Myosins are actin-dependent molecular motors which convert chemical energy from ATP hydrolysis into ...
International audienceThe actin cytoskeleton plays crucial roles in cell morphogenesis and functions...
The actin cytoskeleton plays crucial roles in cell morphogenesis and functions. The main partners of...
Since the discoveries of class I myosins, the first non-muscle myosins, about 30 years ago, their hi...
The organization of actin filaments into higher-ordered structures governs eukaryotic cell shape and...
The use of micropatterned substrates to control actin network self-assembly is protected by patent E...
The use of micropatterned substrates to control actin network self-assembly is protected by patent E...
Ever since the discovery of class I myosins, the first nonmuscle myosins, about 30 years ago, the hi...
SummaryUnlike a static and immobile skeleton, the actin cytoskeleton is a highly dynamic network of ...
Dynamic reorganization of the actomyosin cytoskeleton allows fast modulation of the cell surface, wh...
AbstractClass 1 myosins are monomeric motor proteins that fulfill diverse functions at the membrane/...
Dynamic reorganization of the actomyosin cytoskeleton allows fast modulation of the cell surface, wh...
Mechanical forces play a crucial role in cell functions. Cells can generate force, change their shap...
Myosin II, the myosin which has provided the most biochemical and structural data, is dimeric consis...
Mechanical forces play a crucial role in cell functions. Cells can generate force, change their shap...
Myosins are actin-dependent molecular motors which convert chemical energy from ATP hydrolysis into ...