A ubiquitous building block of signaling pathways is a cycle of covalent modification (e.g., phosphorylation and dephosphorylation in MAPK cascades). Our paper explores the kind of information processing and filtering that can be accomplished by this simple biochemical circuit. Signaling cycles are particularly known for exhibiting a highly sigmoidal (ultrasensitive) input–output characteristic in a certain steady-state regime. Here, we systematically study the cycle's steady-state behavior and its response to time-varying stimuli. We demonstrate that the cycle can actually operate in four different regimes, each with its specific input–output characteristics. These results are obtained using the total quasi–steady-state approximation, whic...
Covalent modification cycles (CMCs) are basic units of signaling systems and their properties are we...
Two distinct mechanisms for filtering noise in an input signal are identified in a class of adaptive...
Background All living systems acquire information about their environment. At the cellular level,...
A ubiquitous building block of signaling pathways is a cycle of covalent modification (e.g., phospho...
AbstractCovalent modification cycles (e.g., phosphorylation-dephosphorylation) underlie most cellula...
AbstractCovalent modification cycles (e.g., phosphorylation-dephosphorylation) underlie most cellula...
abstract: Signaling cascades proliferate signals received on the cell membrane to the nucleus. While...
AbstractCovalent modification cycles (systems in which the activity of a substrate is regulated by t...
We observe the phenomenon of stochastic resonant signaling in signal amplification enzyme cascades, ...
AbstractUltrasensitive cascades often implement thresholding operations in cell signaling and gene r...
We observe the phenomenon of stochastic resonant signaling in signal amplification enzyme cascades, ...
This is the final version of the article. Available from Public Library of Science via the DOI in th...
<div><p>Cells reliably sense environmental changes despite internal and external fluctuations, but t...
Cycles involving covalent modification of proteins are key components of the intracellular signaling...
Background All living systems acquire information about their environment. At the cellular level,...
Covalent modification cycles (CMCs) are basic units of signaling systems and their properties are we...
Two distinct mechanisms for filtering noise in an input signal are identified in a class of adaptive...
Background All living systems acquire information about their environment. At the cellular level,...
A ubiquitous building block of signaling pathways is a cycle of covalent modification (e.g., phospho...
AbstractCovalent modification cycles (e.g., phosphorylation-dephosphorylation) underlie most cellula...
AbstractCovalent modification cycles (e.g., phosphorylation-dephosphorylation) underlie most cellula...
abstract: Signaling cascades proliferate signals received on the cell membrane to the nucleus. While...
AbstractCovalent modification cycles (systems in which the activity of a substrate is regulated by t...
We observe the phenomenon of stochastic resonant signaling in signal amplification enzyme cascades, ...
AbstractUltrasensitive cascades often implement thresholding operations in cell signaling and gene r...
We observe the phenomenon of stochastic resonant signaling in signal amplification enzyme cascades, ...
This is the final version of the article. Available from Public Library of Science via the DOI in th...
<div><p>Cells reliably sense environmental changes despite internal and external fluctuations, but t...
Cycles involving covalent modification of proteins are key components of the intracellular signaling...
Background All living systems acquire information about their environment. At the cellular level,...
Covalent modification cycles (CMCs) are basic units of signaling systems and their properties are we...
Two distinct mechanisms for filtering noise in an input signal are identified in a class of adaptive...
Background All living systems acquire information about their environment. At the cellular level,...