Extrinsic Noise Driven Phenotype Switching in a Self-Regulating Gene
about
Gene switching rate determines response to extrinsic perturbations in the self-activation transcriptional network motifGlobal genetic response in a cancer cell: self-organized coherent expression dynamics.A biophysical model of supercoiling dependent transcription predicts a structural aspect to gene regulation.Effects of DNA replication on mRNA noise.Whole Cell Modeling: From Single Cells to Colonies.The Switch in a Genetic Toggle System with Lévy Noise.Careful accounting of extrinsic noise in protein expression reveals correlations among its sources.Intrinsic phenotypic stability of a bi-stable auto regulatory gene.Fluctuations in reactive networks subject to extrinsic noise studied in the framework of the chemical Langevin equation.Dynamics of simple gene-network motifs subject to extrinsic fluctuations.Colonization of a territory by a stochastic population under a strong Allee effect and a low immigration pressure.Influence of parameter perturbations on the reachability of therapeutic target in systems with switchings.Intrinsic noise in systems with switching environments.Population FBA predicts metabolic phenotypes in yeast.Potential landscape of high dimensional nonlinear stochastic dynamics with large noise.Cell cycle time series gene expression data encoded as cyclic attractors in Hopfield systems.Effect of reaction-step-size noise on the switching dynamics of stochastic populations.Resonant activation of population extinctions.Evolutionary Phase Transitions in Random Environments.Evolution of a Fluctuating Population in a Randomly Switching Environment.Noise-induced multistability in the regulation of cancer by genes and pseudogenes.Gaussian memory in kinematic matrix theory for self-propellers.Cooperation dilemma in finite populations under fluctuating environments.Eco-evolutionary dynamics of a population with randomly switching carrying capacityOscillations in probability distributions for stochastic gene expressionRole of noise and parametric variation in the dynamics of gene regulatory circuits
P2860
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P2860
Extrinsic Noise Driven Phenotype Switching in a Self-Regulating Gene
description
article publié dans la revue scientifique Physical Review Letters
@fr
im Juli 2013 veröffentlichter wissenschaftlicher Artikel
@de
scientific article published in Physical Review Letters
@en
wetenschappelijk artikel
@nl
наукова стаття, опублікована в липні 2013
@uk
name
Extrinsic Noise Driven Phenotype Switching in a Self-Regulating Gene
@en
Extrinsic Noise Driven Phenotype Switching in a Self-Regulating Gene
@nl
type
label
Extrinsic Noise Driven Phenotype Switching in a Self-Regulating Gene
@en
Extrinsic Noise Driven Phenotype Switching in a Self-Regulating Gene
@nl
prefLabel
Extrinsic Noise Driven Phenotype Switching in a Self-Regulating Gene
@en
Extrinsic Noise Driven Phenotype Switching in a Self-Regulating Gene
@nl
P2093
P2860
P1476
Extrinsic Noise Driven Phenotype Switching in a Self-Regulating Gene
@en
P2093
Elijah Roberts
Michael Assaf
Nigel Goldenfeld
P2860
P356
10.1103/PHYSREVLETT.111.058102
P407
P577
2013-07-30T00:00:00Z