The actomyosin cell cortex is an active contractile material for driving cell-and tissue morphogenesis. The cortex has a tendency to form a pattern of myosin foci, which is a signature of potentially unstable behavior. How a system that is prone to such instabilities can rveliably drive morphogenesis remains an outstanding question. Here, we report that in the Caenorhabditis elegans zygote, feedback between active RhoA and myosin induces a contractile instability in the cortex. We discover that an independent RhoA pacemaking oscillator controls this instability, generating a pulsatory pattern of myosin foci and preventing the collapse of cortical material into a few dynamic contracting regions. Our work reveals how contractile instabilities...
Actin network architecture and dynamics play a central role in cell contractility and tissue morphog...
One of the great challenges in biology is to understand the mechanisms by which morphogenetic proces...
During animal development, it is crucial that cells can sense and adapt to mechanical forces from th...
The actomyosin cell cortex is an active contractile material for driving cell-and tissue morphogenes...
The actomyosin cell cortex is an active contractile material for driving cell- and tissue morphogene...
Epithelial morphogenesis consists of the various process that promote the bending, folding, and rear...
The biological world is full of patterns, from macroscopic patterns such as leaf veins to microscopi...
Contractile forces in the actomyosin cortex are required for cellular morphogenesis. This includes t...
Apical constriction changes cell shapes, driving critical morphogenetic events, including gastrulati...
Actin network architecture and dynamics play a central role in cell contractility and tissue morphog...
Actin network architecture and dynamics play a central role in cell contractility and tissue morphog...
S ummary Actin network architecture and dynamics play a central role in cell contractility and tissu...
S ummary Actin network architecture and dynamics play a central role in cell contractility and tissu...
S ummary Actin network architecture and dynamics play a central role in cell contractility and tissu...
The cell cortex is essential to maintain animal cell shape, and contractile forces generated within ...
Actin network architecture and dynamics play a central role in cell contractility and tissue morphog...
One of the great challenges in biology is to understand the mechanisms by which morphogenetic proces...
During animal development, it is crucial that cells can sense and adapt to mechanical forces from th...
The actomyosin cell cortex is an active contractile material for driving cell-and tissue morphogenes...
The actomyosin cell cortex is an active contractile material for driving cell- and tissue morphogene...
Epithelial morphogenesis consists of the various process that promote the bending, folding, and rear...
The biological world is full of patterns, from macroscopic patterns such as leaf veins to microscopi...
Contractile forces in the actomyosin cortex are required for cellular morphogenesis. This includes t...
Apical constriction changes cell shapes, driving critical morphogenetic events, including gastrulati...
Actin network architecture and dynamics play a central role in cell contractility and tissue morphog...
Actin network architecture and dynamics play a central role in cell contractility and tissue morphog...
S ummary Actin network architecture and dynamics play a central role in cell contractility and tissu...
S ummary Actin network architecture and dynamics play a central role in cell contractility and tissu...
S ummary Actin network architecture and dynamics play a central role in cell contractility and tissu...
The cell cortex is essential to maintain animal cell shape, and contractile forces generated within ...
Actin network architecture and dynamics play a central role in cell contractility and tissue morphog...
One of the great challenges in biology is to understand the mechanisms by which morphogenetic proces...
During animal development, it is crucial that cells can sense and adapt to mechanical forces from th...