AbstractCell shape and movements rely on complex biochemical pathways that regulate actin, microtubules, and substrate adhesions. Some of these pathways act through altering the cortex contractility. Here we examined cellular systems where contractility is enhanced by disassembly of the microtubules. We found that adherent cells, when detached from their substrate, developed a membrane bulge devoid of detectable actin and myosin. A constriction ring at the base of the bulge oscillated from one side of the cell to the other. The movement was accompanied by sequential redistribution of actin and myosin to the membrane. We observed this oscillatory behavior also in cell fragments of various sizes, providing a simplified, nucleus-free system fo...
Cytokinesis, the physical separation of daughter cells at the end of mitosis, requires precise regul...
Cell shape control is key to a number of fundamental biological processes, including cell division a...
Abstract: In animal cells, shape is mostly determined by the actomyosin cortex, a thin cytoskeletal ...
The shape of animal cells is, to a large extent, determined by the cortical actin network that under...
Cell cortex remodeling during cell division is a result of myofilament-driven contractility of the c...
International audienceThe cell cortex is a contractile actin meshwork, which determines cell shape a...
The actomyosin cytoskeleton is a primary force-generating mechanism in morphogenesis, thus a robust ...
Almost all animal cells maintain a thin layer of actin filaments and associated proteins underneath ...
Restricted Access.We demonstrate that 3T3 fibroblast cells can exhibit periodic shape oscillations f...
The actomyosin ring generates force to ingress the cytokinetic cleavage furrow in animal cells, yet ...
Microtubules stimulate contractile-ring formation in the equatorial cortex and simultaneously suppre...
ABSTRACT Myosin II motors embedded within the actin cortex generate contractile forces to modulate c...
Cell shape changes are key to cell physiology and underlie fundamental processes such as cell migrat...
Cell polarity establishment implies a symmetry-breaking event, resulting in an axis along which the ...
Cytokinesis, the physical separation of daughter cells at the end of mitosis, requires precise regul...
Cytokinesis, the physical separation of daughter cells at the end of mitosis, requires precise regul...
Cell shape control is key to a number of fundamental biological processes, including cell division a...
Abstract: In animal cells, shape is mostly determined by the actomyosin cortex, a thin cytoskeletal ...
The shape of animal cells is, to a large extent, determined by the cortical actin network that under...
Cell cortex remodeling during cell division is a result of myofilament-driven contractility of the c...
International audienceThe cell cortex is a contractile actin meshwork, which determines cell shape a...
The actomyosin cytoskeleton is a primary force-generating mechanism in morphogenesis, thus a robust ...
Almost all animal cells maintain a thin layer of actin filaments and associated proteins underneath ...
Restricted Access.We demonstrate that 3T3 fibroblast cells can exhibit periodic shape oscillations f...
The actomyosin ring generates force to ingress the cytokinetic cleavage furrow in animal cells, yet ...
Microtubules stimulate contractile-ring formation in the equatorial cortex and simultaneously suppre...
ABSTRACT Myosin II motors embedded within the actin cortex generate contractile forces to modulate c...
Cell shape changes are key to cell physiology and underlie fundamental processes such as cell migrat...
Cell polarity establishment implies a symmetry-breaking event, resulting in an axis along which the ...
Cytokinesis, the physical separation of daughter cells at the end of mitosis, requires precise regul...
Cytokinesis, the physical separation of daughter cells at the end of mitosis, requires precise regul...
Cell shape control is key to a number of fundamental biological processes, including cell division a...
Abstract: In animal cells, shape is mostly determined by the actomyosin cortex, a thin cytoskeletal ...