Local cell contraction pulses play important roles in tissue and cell morphogenesis. Here, we improve a chemo-optogenetic approach and apply it to investigate the signal network that generates these pulses. We use these measurements to derive and parameterize a system of ordinary differential equations describing temporal signal network dynamics. Bifurcation analysis and numerical simulations predict a strong dependence of oscillatory system dynamics on the concentration of GEF-H1, an Lbc-type RhoGEF, which mediates the positive feedback amplification of Rho activity. This prediction is confirmed experimentally via optogenetic tuning of the effective GEF-H1 concentration in individual living cells. Numerical simulations show that pulse ampl...
AbstractRecently developed optogenetic methods promise to revolutionize cell biology by allowing sig...
Tissue morphogenesis emerges from coordinated cell shape changes driven by actomyosin contractions. ...
Rho GTPases, a family of signaling proteins, play a pivotal role by acting as molecular switches to ...
Local cell contraction pulses play important roles in tissue and cell morphogenesis. Here, we improv...
Cells process information via signal networks that typically involve multiple components which are i...
Rho GTPase-based signaling networks control cellular dynamics by coordinating protrusions and retrac...
SummaryThe complex, interconnected architecture of cell-signaling networks makes it challenging to d...
The biological world is full of patterns, from macroscopic patterns such as leaf veins to microscopi...
Contractile forces are the end effectors of cell migration, division, morphogenesis, wound healing a...
AbstractThe ability to stimulate mammalian cells with light has significantly changed our understand...
In living matter, shape fluctuations induced by acto-myosin are usually studied in vitro via reconst...
The complex, interconnected architecture of cell-signaling networks makes it challenging to disentan...
Optogenetic techniques have changed the landscape of neuroscience by offering high temporal and spat...
Recent experimental observations reveal that local cellular contraction pulses emerge via a combinat...
Adherent cells use actomyosin contractility to generate mechanical force and to sense the physical p...
AbstractRecently developed optogenetic methods promise to revolutionize cell biology by allowing sig...
Tissue morphogenesis emerges from coordinated cell shape changes driven by actomyosin contractions. ...
Rho GTPases, a family of signaling proteins, play a pivotal role by acting as molecular switches to ...
Local cell contraction pulses play important roles in tissue and cell morphogenesis. Here, we improv...
Cells process information via signal networks that typically involve multiple components which are i...
Rho GTPase-based signaling networks control cellular dynamics by coordinating protrusions and retrac...
SummaryThe complex, interconnected architecture of cell-signaling networks makes it challenging to d...
The biological world is full of patterns, from macroscopic patterns such as leaf veins to microscopi...
Contractile forces are the end effectors of cell migration, division, morphogenesis, wound healing a...
AbstractThe ability to stimulate mammalian cells with light has significantly changed our understand...
In living matter, shape fluctuations induced by acto-myosin are usually studied in vitro via reconst...
The complex, interconnected architecture of cell-signaling networks makes it challenging to disentan...
Optogenetic techniques have changed the landscape of neuroscience by offering high temporal and spat...
Recent experimental observations reveal that local cellular contraction pulses emerge via a combinat...
Adherent cells use actomyosin contractility to generate mechanical force and to sense the physical p...
AbstractRecently developed optogenetic methods promise to revolutionize cell biology by allowing sig...
Tissue morphogenesis emerges from coordinated cell shape changes driven by actomyosin contractions. ...
Rho GTPases, a family of signaling proteins, play a pivotal role by acting as molecular switches to ...