Cytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mechanical forces driving the restructuring are attributed to the action of molecular motors and the dynamics of cytoskeletal filaments, which both consume chemical energy. By contrast, non-enzymatic filament crosslinkers are regarded as mere friction-generating entities. Here, we experimentally demonstrate that diffusible microtubule crosslinkers of the Ase1/PRC1/Map65 family generate directed microtubule sliding when confined between partially overlapping microtubules. The Ase1-generated forces, directly measured by optical tweezers to be in the piconewton-range, were sufficient to antagonize motor-protein driven microtubule sliding. Force generation i...
The actin and microtubule cytoskeletons form active networks in the cell that can contract and remod...
The actin and microtubule cytoskeletons form active networks in the cell that can contract and remod...
During mitosis, molecular motors hydrolyze ATP to generate sliding forces between adjacent microtubu...
Cytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mechanical f...
Cytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mechanical f...
Cytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mechanical f...
SummaryCytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mecha...
Cytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mechanical f...
SummaryCytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mecha...
The actin and microtubule cytoskeletons form active networks in the cell that can contract and remod...
The actin and microtubule cytoskeletons form active networks in the cell that can contract and remod...
The actin and microtubule cytoskeletons form active networks in the cell that can contract and remod...
d Diffusible crosslinkers confined in microtubule overlaps can generate directed forces d Thermal mo...
The cytoskeleton is a network of interconnected protein filaments, which provide a three-dimensional...
The actin and microtubule cytoskeletons form active networks in the cell that can contract and remod...
The actin and microtubule cytoskeletons form active networks in the cell that can contract and remod...
The actin and microtubule cytoskeletons form active networks in the cell that can contract and remod...
During mitosis, molecular motors hydrolyze ATP to generate sliding forces between adjacent microtubu...
Cytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mechanical f...
Cytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mechanical f...
Cytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mechanical f...
SummaryCytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mecha...
Cytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mechanical f...
SummaryCytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mecha...
The actin and microtubule cytoskeletons form active networks in the cell that can contract and remod...
The actin and microtubule cytoskeletons form active networks in the cell that can contract and remod...
The actin and microtubule cytoskeletons form active networks in the cell that can contract and remod...
d Diffusible crosslinkers confined in microtubule overlaps can generate directed forces d Thermal mo...
The cytoskeleton is a network of interconnected protein filaments, which provide a three-dimensional...
The actin and microtubule cytoskeletons form active networks in the cell that can contract and remod...
The actin and microtubule cytoskeletons form active networks in the cell that can contract and remod...
The actin and microtubule cytoskeletons form active networks in the cell that can contract and remod...
During mitosis, molecular motors hydrolyze ATP to generate sliding forces between adjacent microtubu...