SummaryCells must respond sensitively to time-varying inputs in complex signaling environments. To understand how signaling networks process dynamic inputs into gene expression outputs and the role of noise in cellular information processing, we studied the immune pathway NF-κB under periodic cytokine inputs using microfluidic single-cell measurements and stochastic modeling. We find that NF-κB dynamics in fibroblasts synchronize with oscillating TNF signal and become entrained, leading to significantly increased NF-κB oscillation amplitude and mRNA output compared to non-entrained response. Simulations show that intrinsic biochemical noise in individual cells improves NF-κB oscillation and entrainment, whereas cell-to-cell variability in N...
The dynamic signal encoding paradigm suggests that information flows from the extracellular environm...
The dynamic signal encoding paradigm suggests that information flows from the extracellular environm...
This is the final version of the article. Available from Public Library of Science via the DOI in th...
SummaryCells must respond sensitively to time-varying inputs in complex signaling environments. To u...
One of the major open questions in biology today is how cells operate robustly despite the presence ...
Digital signaling enhances robustness of cellular decisions in noisy environments, but it is unclear...
AbstractLiving cells may be considered noisy or stochastic biochemical reactors. In eukaryotic cells...
Stochasticity inherent to biochemical reactions (intrinsic noise) and variability in cellular states...
SummaryProgenitor cells within a clonal population show variable proclivity toward lineage commitmen...
Progenitor cells within a clonal population show variable proclivity toward lineage commitment and d...
Signal transduction networks allow eukaryotic cells to make decisions based on information about int...
The genetic circuits that regulate cellular functions are subject to stochastic fluctuations, or ‘no...
Signal transduction networks allow eukaryotic cells to make decisions based on information about int...
The genetic circuits that regulate cellular functions are subject to stochastic fluctuations, or ‘no...
The dynamic signal encoding paradigm suggests that information flows from the extracellular environm...
The dynamic signal encoding paradigm suggests that information flows from the extracellular environm...
The dynamic signal encoding paradigm suggests that information flows from the extracellular environm...
This is the final version of the article. Available from Public Library of Science via the DOI in th...
SummaryCells must respond sensitively to time-varying inputs in complex signaling environments. To u...
One of the major open questions in biology today is how cells operate robustly despite the presence ...
Digital signaling enhances robustness of cellular decisions in noisy environments, but it is unclear...
AbstractLiving cells may be considered noisy or stochastic biochemical reactors. In eukaryotic cells...
Stochasticity inherent to biochemical reactions (intrinsic noise) and variability in cellular states...
SummaryProgenitor cells within a clonal population show variable proclivity toward lineage commitmen...
Progenitor cells within a clonal population show variable proclivity toward lineage commitment and d...
Signal transduction networks allow eukaryotic cells to make decisions based on information about int...
The genetic circuits that regulate cellular functions are subject to stochastic fluctuations, or ‘no...
Signal transduction networks allow eukaryotic cells to make decisions based on information about int...
The genetic circuits that regulate cellular functions are subject to stochastic fluctuations, or ‘no...
The dynamic signal encoding paradigm suggests that information flows from the extracellular environm...
The dynamic signal encoding paradigm suggests that information flows from the extracellular environm...
The dynamic signal encoding paradigm suggests that information flows from the extracellular environm...
This is the final version of the article. Available from Public Library of Science via the DOI in th...