AbstractCovalent modification cycles (e.g., phosphorylation-dephosphorylation) underlie most cellular signaling and control processes. Low molecular copy number, arising from compartmental segregation and slow diffusion between compartments, potentially renders these cycles vulnerable to intrinsic chemical fluctuations. How can a cell operate reliably in the presence of this inherent stochasticity? How do changes in extrinsic parameters lead to variability of response? Can cells exploit these parameters to tune cycles to different ranges of stimuli? We study the dynamics of an isolated phosphorylation cycle. Our model shows that the cycle transmits information reliably if it is tuned to an optimal parameter range, despite intrinsic fluctuat...
Cells live in changing, dynamic environments. To understand cellular decision-making, we must theref...
Cells live in changing, dynamic environments. To understand cellular decision-making, we must theref...
SummaryCellular signaling processes can exhibit pronounced cell-to-cell variability in genetically i...
AbstractCovalent modification cycles (e.g., phosphorylation-dephosphorylation) underlie most cellula...
<div><p>Cells reliably sense environmental changes despite internal and external fluctuations, but t...
A ubiquitous building block of signaling pathways is a cycle of covalent modification (e.g., phospho...
AbstractThe phosphorylation-dephosphorylation cycle is a common motif in cellular signaling networks...
Abstract I Cells are constantly faced with the challenge of functioning reliably while being subject...
SummaryThe flexibility of MAPK cascade responses enables regulation of a vast array of cell fate dec...
A ubiquitous building block of signaling pathways is a cycle of covalent modification (e.g., phospho...
AbstractCovalent modification cycles (systems in which the activity of a substrate is regulated by t...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Computational and Systems Biology Program, 2...
AbstractMultisite phosphorylation of regulatory proteins has been proposed to underlie ultrasensitiv...
AbstractSingle-molecule imaging analysis of chemotactic response in eukaryotic cells has revealed a ...
<div><p>Cells live in changing, dynamic environments. To understand cellular decision-making, we mus...
Cells live in changing, dynamic environments. To understand cellular decision-making, we must theref...
Cells live in changing, dynamic environments. To understand cellular decision-making, we must theref...
SummaryCellular signaling processes can exhibit pronounced cell-to-cell variability in genetically i...
AbstractCovalent modification cycles (e.g., phosphorylation-dephosphorylation) underlie most cellula...
<div><p>Cells reliably sense environmental changes despite internal and external fluctuations, but t...
A ubiquitous building block of signaling pathways is a cycle of covalent modification (e.g., phospho...
AbstractThe phosphorylation-dephosphorylation cycle is a common motif in cellular signaling networks...
Abstract I Cells are constantly faced with the challenge of functioning reliably while being subject...
SummaryThe flexibility of MAPK cascade responses enables regulation of a vast array of cell fate dec...
A ubiquitous building block of signaling pathways is a cycle of covalent modification (e.g., phospho...
AbstractCovalent modification cycles (systems in which the activity of a substrate is regulated by t...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Computational and Systems Biology Program, 2...
AbstractMultisite phosphorylation of regulatory proteins has been proposed to underlie ultrasensitiv...
AbstractSingle-molecule imaging analysis of chemotactic response in eukaryotic cells has revealed a ...
<div><p>Cells live in changing, dynamic environments. To understand cellular decision-making, we mus...
Cells live in changing, dynamic environments. To understand cellular decision-making, we must theref...
Cells live in changing, dynamic environments. To understand cellular decision-making, we must theref...
SummaryCellular signaling processes can exhibit pronounced cell-to-cell variability in genetically i...