Cdc42, Rac, and Rho are small GTPases known to play a central role in signal transduction to the actin cytoskeleton. These proteins regulate cell motility, by affecting nucleation, uncapping, and depolymerization of actin filaments, and acto-myosin contractility. Studies of crosstalk and mutual feedbacks in these three proteins have led to a number of proposals for their interaction. At the same time, observations of the spatio-temporal dynamics of Rho-family proteins give evidence of spatial polarization and mutual exclusion between Cdc42/Rac and Rho. In this paper, we formulate a mathematical model to account for such observations, based on the known underlying biology of these proteins. We first investigate which of the crosstalk schemes...
To regulate shape changes, motility and chemotaxis in eukaryotic cells, signal transduction pathways...
The GTPases Rac1, RhoA and Cdc42 act together to control cytoskeleton dynamics. Recent biosensor stu...
The GTPases Rac1, RhoA and Cdc42 act together to control cytoskeleton dynamics. Recent biosensor stu...
Cdc42, Rac, and Rho are small GTPases known to play a central role in signal transduction to the act...
Cdc42, Rac, and Rho are small GTPases known to play a central role in signal transduction to the act...
and Rho are small GTPases known to play a central role in signal transduction to the actin cytoskele...
Rho family GTPases play an essential role in cell motility, transducing extracellular signal to the ...
AbstractGradient sensing, polarization, and chemotaxis of motile cells involve the actin cytoskeleto...
AbstractMotile eukaryotic cells polarize in response to external signals. Numerous mechanisms have b...
Cells that move in response to an external signal are crucial for diverse physiological processes su...
Rho-GTPases are master regulators of polarity establishment and cell morphology. Positive feedback e...
<div><p>Rho-GTPases are master regulators of polarity establishment and cell morphology. Positive fe...
The small GTPase Rac is known to be an important regulator of cell polarization, cytoskeletal reorga...
To regulate shape changes, motility and chemotaxis in eukaryotic cells, signal transduction pathways...
To regulate shape changes, motility and chemotaxis in eukaryotic cells, signal transduction pathways...
To regulate shape changes, motility and chemotaxis in eukaryotic cells, signal transduction pathways...
The GTPases Rac1, RhoA and Cdc42 act together to control cytoskeleton dynamics. Recent biosensor stu...
The GTPases Rac1, RhoA and Cdc42 act together to control cytoskeleton dynamics. Recent biosensor stu...
Cdc42, Rac, and Rho are small GTPases known to play a central role in signal transduction to the act...
Cdc42, Rac, and Rho are small GTPases known to play a central role in signal transduction to the act...
and Rho are small GTPases known to play a central role in signal transduction to the actin cytoskele...
Rho family GTPases play an essential role in cell motility, transducing extracellular signal to the ...
AbstractGradient sensing, polarization, and chemotaxis of motile cells involve the actin cytoskeleto...
AbstractMotile eukaryotic cells polarize in response to external signals. Numerous mechanisms have b...
Cells that move in response to an external signal are crucial for diverse physiological processes su...
Rho-GTPases are master regulators of polarity establishment and cell morphology. Positive feedback e...
<div><p>Rho-GTPases are master regulators of polarity establishment and cell morphology. Positive fe...
The small GTPase Rac is known to be an important regulator of cell polarization, cytoskeletal reorga...
To regulate shape changes, motility and chemotaxis in eukaryotic cells, signal transduction pathways...
To regulate shape changes, motility and chemotaxis in eukaryotic cells, signal transduction pathways...
To regulate shape changes, motility and chemotaxis in eukaryotic cells, signal transduction pathways...
The GTPases Rac1, RhoA and Cdc42 act together to control cytoskeleton dynamics. Recent biosensor stu...
The GTPases Rac1, RhoA and Cdc42 act together to control cytoskeleton dynamics. Recent biosensor stu...