Background Cells are not mixed bags of signaling molecules. As a consequence, signals must travel from their origin to distal locations. Much is understood about the purely diffusive propagation of signals through space. Many signals, however, propagate via signaling cascades. Here, we show that, depending on their kinetics, cascades speed up or slow down the propagation of signals through space, relative to pure diffusion. Methodology/Principal Findings We modeled simple cascades operating under different limits of Michaelis-Menten kinetics using deterministic reaction-diffusion equations. Cascades operating far from enzyme saturation speed up signal propagation; the second mobile species moves more quickly than the first through sp...
Recent discoveries of phosphorylation gradients and microdomains with different protein activities h...
abstract: Signaling cascades proliferate signals received on the cell membrane to the nucleus. While...
Push–pull networks are ubiquitous in signal transduction pathways in both prokaryotic and eukaryotic...
Cells are not mixed bags of signaling molecules. As a consequence, signals must travel from their or...
Cells are not mixed bags of signaling molecules. As a consequence, signals must travel from their or...
Cells are not mixed bags of signaling molecules. As a consequence, signals must travel from their or...
The temporal and stationary behavior of protein modification cascades has been extensively studied, ...
The temporal and stationary behavior of protein modification cascades has been extensively studied, ...
The temporal and stationary behavior of protein modification cascades has been extensively studied, ...
International audienceThe MAPK signaling cascade is nowadays understood as a network module highly c...
International audienceThe MAPK signaling cascade is nowadays understood as a network module highly c...
International audienceThe MAPK signaling cascade is nowadays understood as a network module highly c...
International audienceThe MAPK signaling cascade is nowadays understood as a network module highly c...
International audienceThe MAPK signaling cascade is nowadays understood as a network module highly c...
Background: Signal transduction is the process through which cells communicate with the external env...
Recent discoveries of phosphorylation gradients and microdomains with different protein activities h...
abstract: Signaling cascades proliferate signals received on the cell membrane to the nucleus. While...
Push–pull networks are ubiquitous in signal transduction pathways in both prokaryotic and eukaryotic...
Cells are not mixed bags of signaling molecules. As a consequence, signals must travel from their or...
Cells are not mixed bags of signaling molecules. As a consequence, signals must travel from their or...
Cells are not mixed bags of signaling molecules. As a consequence, signals must travel from their or...
The temporal and stationary behavior of protein modification cascades has been extensively studied, ...
The temporal and stationary behavior of protein modification cascades has been extensively studied, ...
The temporal and stationary behavior of protein modification cascades has been extensively studied, ...
International audienceThe MAPK signaling cascade is nowadays understood as a network module highly c...
International audienceThe MAPK signaling cascade is nowadays understood as a network module highly c...
International audienceThe MAPK signaling cascade is nowadays understood as a network module highly c...
International audienceThe MAPK signaling cascade is nowadays understood as a network module highly c...
International audienceThe MAPK signaling cascade is nowadays understood as a network module highly c...
Background: Signal transduction is the process through which cells communicate with the external env...
Recent discoveries of phosphorylation gradients and microdomains with different protein activities h...
abstract: Signaling cascades proliferate signals received on the cell membrane to the nucleus. While...
Push–pull networks are ubiquitous in signal transduction pathways in both prokaryotic and eukaryotic...