Most metazoan cells entering mitosis undergo characteristic rounding, which is important for accurate spindle positioning and chromosome separation. Rounding is driven by contractile tension generated by myosin motors in the sub-membranous actin cortex. Recent studies highlight that alongside myosin activity, cortical actin organization is a key regulator of cortex tension. Yet, how mitotic actin organization is controlled remains poorly understood. To address this, we characterized the F-actin interactome in spread interphase and round mitotic cells. Using super-resolution microscopy, we then screened for regulators of cortex architecture and identified the intermediate filament vimentin and the actin-vimentin linker plectin as unexpected ...
Precisely controlled cell deformations are key to cell migration, division and tissue morphogenesis,...
Animal cell shape is largely determined by the cortex, a thin actin network underlying the plasma me...
The actomyosin cytoskeleton is a primary force-generating mechanism in morphogenesis, thus a robust ...
Cell shape control is key to a number of fundamental biological processes, including cell division a...
Proper spindle positioning and orientation are essential for accurate mitosis which requires dynamic...
Cells going through mitosis undergo precisely timed changes in cell shape and organisation, which se...
Proper spindle positioning and orientation are essential for accurate mitosis which requires dynamic...
Cells going through mitosis undergo precisely timed changes in cell shape and organisation, which se...
The cytoskeleton of eukaryotic cells is primarily composed of networks of filamentous proteins, F-ac...
Actomyosin-dependent mitotic rounding occurs in both cell culture and tissue, where it is involved i...
SummaryAccurate animal cell division requires precise coordination of changes in the structure of th...
Accurate animal cell division requires precise coordination of changes in the structure of the micro...
SummaryAs they enter mitosis, animal cells undergo profound actin-dependent changes in shape to beco...
Cells going through mitosis undergo precisely timed changes in cell shape and organisation, which se...
AbstractThe mechanical properties of a cell determine many aspects of its behavior, and these mechan...
Precisely controlled cell deformations are key to cell migration, division and tissue morphogenesis,...
Animal cell shape is largely determined by the cortex, a thin actin network underlying the plasma me...
The actomyosin cytoskeleton is a primary force-generating mechanism in morphogenesis, thus a robust ...
Cell shape control is key to a number of fundamental biological processes, including cell division a...
Proper spindle positioning and orientation are essential for accurate mitosis which requires dynamic...
Cells going through mitosis undergo precisely timed changes in cell shape and organisation, which se...
Proper spindle positioning and orientation are essential for accurate mitosis which requires dynamic...
Cells going through mitosis undergo precisely timed changes in cell shape and organisation, which se...
The cytoskeleton of eukaryotic cells is primarily composed of networks of filamentous proteins, F-ac...
Actomyosin-dependent mitotic rounding occurs in both cell culture and tissue, where it is involved i...
SummaryAccurate animal cell division requires precise coordination of changes in the structure of th...
Accurate animal cell division requires precise coordination of changes in the structure of the micro...
SummaryAs they enter mitosis, animal cells undergo profound actin-dependent changes in shape to beco...
Cells going through mitosis undergo precisely timed changes in cell shape and organisation, which se...
AbstractThe mechanical properties of a cell determine many aspects of its behavior, and these mechan...
Precisely controlled cell deformations are key to cell migration, division and tissue morphogenesis,...
Animal cell shape is largely determined by the cortex, a thin actin network underlying the plasma me...
The actomyosin cytoskeleton is a primary force-generating mechanism in morphogenesis, thus a robust ...