Contractile actomyosin bundles, stress fibers, govern key cellular processes including migration, adhesion, and mechanosensing. Stress fibers are thus critical for developmental morphogenesis. The most prominent actomyosin bundles, ventral stress fibers, are generated through coalescence of pre-existing stress fiber precursors. However, whether stress fibers can assemble through other mechanisms has remained elusive. We report that stress fibers can also form without requirement of pre-existing actomyosin bundles. These structures, which we named cortical stress fibers, are embedded in the cell cortex and assemble preferentially underneath the nucleus. In this process, non-muscle myosin II pulses orchestrate the reorganization of cortical a...
AbstractStress fibers are actomyosin-based bundles whose structural and contractile properties under...
Almost all animal cells maintain a thin layer of actin filaments and associated proteins underneath ...
Precisely controlled cell deformations are key to cell migration, division and tissue morphogenesis,...
Contractile actomyosin bundles, stress fibers, govern key cellular processes including migration, ad...
Actin filaments assemble into diverse protrusive and contractile structures to provide force for a n...
Adhesion and morphogenesis of many non-muscle cells are guided by contractile actomyosin bundles cal...
SummaryBackgroundCell migration and morphogenesis are driven by both protrusive and contractile acti...
Mechanotransduction is the process through which cells survey the mechanical properties of their env...
International audienceContractile actomyosin networks are responsible for the production of intracel...
Cell migration is a key process underlying embryogenesis, wound healing, and cancer progression. The...
Stress fibers (SFs) are often the most prominent cytoskeletal structures in cells growing in tissue ...
Actomyosin stress fibers (SFs) play key roles in driving polarized motility and generating traction ...
Stress fibers and focal adhesions are complex protein arrays that produce, transmit and sense mechan...
Stress fibers are actomyosin-based bundles whose structural and contractile properties underlie nume...
Biological functions rely on ordered structures and intricately controlled collective dynamics. This...
AbstractStress fibers are actomyosin-based bundles whose structural and contractile properties under...
Almost all animal cells maintain a thin layer of actin filaments and associated proteins underneath ...
Precisely controlled cell deformations are key to cell migration, division and tissue morphogenesis,...
Contractile actomyosin bundles, stress fibers, govern key cellular processes including migration, ad...
Actin filaments assemble into diverse protrusive and contractile structures to provide force for a n...
Adhesion and morphogenesis of many non-muscle cells are guided by contractile actomyosin bundles cal...
SummaryBackgroundCell migration and morphogenesis are driven by both protrusive and contractile acti...
Mechanotransduction is the process through which cells survey the mechanical properties of their env...
International audienceContractile actomyosin networks are responsible for the production of intracel...
Cell migration is a key process underlying embryogenesis, wound healing, and cancer progression. The...
Stress fibers (SFs) are often the most prominent cytoskeletal structures in cells growing in tissue ...
Actomyosin stress fibers (SFs) play key roles in driving polarized motility and generating traction ...
Stress fibers and focal adhesions are complex protein arrays that produce, transmit and sense mechan...
Stress fibers are actomyosin-based bundles whose structural and contractile properties underlie nume...
Biological functions rely on ordered structures and intricately controlled collective dynamics. This...
AbstractStress fibers are actomyosin-based bundles whose structural and contractile properties under...
Almost all animal cells maintain a thin layer of actin filaments and associated proteins underneath ...
Precisely controlled cell deformations are key to cell migration, division and tissue morphogenesis,...