Cellular decision-making is driven by dynamic behaviours, such as the preparations for sunrise enabled by circadian rhythms and the choice of cell fates enabled by positive feedback. Such behaviours are often built upon ultrasensitive responses where a linear change in input generates a sigmoidal change in output. Phosphorylation-dephosphorylation cycles are one means to generate ultrasensitivity. Using bioinformatics, we show that in vivo levels of kinases and phosphatases frequently exceed the levels of their corresponding substrates in budding yeast. This result is in contrast to the conditions often required by zero-order ultrasensitivity, perhaps the most well known means for how such cycles become ultrasensitive. We therefore introduc...
<div><p>Two-component signal transduction systems, where the phosphorylation state of a regulator pr...
Signal amplification in biomolecular networks converts a linear input to a steeply sigmoid output an...
Bell-shaped and ultrasensitive dose-response in phosphorylation-dephosphorylation cycles: the role o...
Cellular decision-making is driven by dynamic behaviours, such as the preparations for sunrise enabl...
Cellular decision-making is driven by dynamic behaviours, such as the preparations for sunrise enabl...
Background Phosphorylation-dephosphorylation cycles (PDCs) mediated by kinases and phosphatases are ...
<p>(<b>A</b>) Simulation of the response curve (in black) and the concentration of the states of the...
Cellular signaling is initially confined to the plasma membrane, where the cytoplasmic tails of surf...
AbstractCellular signaling is initially confined to the plasma membrane, where the cytoplasmic tails...
Cellular signaling networks are subject to transcriptional and proteolytic regulation under both phy...
<p>The normalized response of the phosphorylation–dephosphorylation cycle depicted in <a href="http:...
<div><p>Cellular signaling networks are subject to transcriptional and proteolytic regulation under ...
The yeast pheromone response pathway is a canonical three-step mitogen activated protein kinase (MAP...
The yeast pheromone response pathway is a canonical three-step mitogen activated protein kinase (MAP...
AbstractThe phosphorylation of a protein on multiple sites has been proposed to promote the switchli...
<div><p>Two-component signal transduction systems, where the phosphorylation state of a regulator pr...
Signal amplification in biomolecular networks converts a linear input to a steeply sigmoid output an...
Bell-shaped and ultrasensitive dose-response in phosphorylation-dephosphorylation cycles: the role o...
Cellular decision-making is driven by dynamic behaviours, such as the preparations for sunrise enabl...
Cellular decision-making is driven by dynamic behaviours, such as the preparations for sunrise enabl...
Background Phosphorylation-dephosphorylation cycles (PDCs) mediated by kinases and phosphatases are ...
<p>(<b>A</b>) Simulation of the response curve (in black) and the concentration of the states of the...
Cellular signaling is initially confined to the plasma membrane, where the cytoplasmic tails of surf...
AbstractCellular signaling is initially confined to the plasma membrane, where the cytoplasmic tails...
Cellular signaling networks are subject to transcriptional and proteolytic regulation under both phy...
<p>The normalized response of the phosphorylation–dephosphorylation cycle depicted in <a href="http:...
<div><p>Cellular signaling networks are subject to transcriptional and proteolytic regulation under ...
The yeast pheromone response pathway is a canonical three-step mitogen activated protein kinase (MAP...
The yeast pheromone response pathway is a canonical three-step mitogen activated protein kinase (MAP...
AbstractThe phosphorylation of a protein on multiple sites has been proposed to promote the switchli...
<div><p>Two-component signal transduction systems, where the phosphorylation state of a regulator pr...
Signal amplification in biomolecular networks converts a linear input to a steeply sigmoid output an...
Bell-shaped and ultrasensitive dose-response in phosphorylation-dephosphorylation cycles: the role o...