Many cellular processes require decision making mechanisms, which must act reliably even in the unavoidable presence of substantial amounts of noise. However, the multistable genetic switches that underlie most decision-making processes are dominated by fluctuations that can induce random jumps between alternative cellular states. Here we show, via theoretical modeling of a population of noise-driven bistable genetic switches, that reliable timing of decision-making processes can be accomplished for large enough population sizes, as long as cells are globally coupled by chemical means. In the light of these results, we conjecture that cell proliferation, in the presence of cell–cell communication, could provide a mechanism for reliable...
The balance between maintenance of the stem cell state and terminal differentiation is influenced by...
Turning genes on and off is a mechanism by which cells and tissues make phenotypic decisions. Gene n...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
Many cellular processes require decision making mechanisms, which must act reliably even in the unav...
BACKGROUND: Cellular transformations which involve a significant phenotypical change of the cell's s...
Cellular transformations which involve a significant phenotypical change of the cell’s state use bis...
Noise caused by fluctuations at the molecular level is a fundamental part of intracellular processes...
SummaryProgenitor cells within a clonal population show variable proclivity toward lineage commitmen...
Stochastic fluctuations, or noise, are ubiquitous in biological systems and play an important role i...
Noise can induce various dynamical behaviors in nonlinear systems. White noise perturbed systems hav...
Cellular decision making is the process whereby cells assume different, functionally important and h...
Many cellular decision processes, including proliferation, differentiation, and phenotypic switching...
Progenitor cells within a clonal population show variable proclivity toward lineage commitment and d...
<div><p>Many cellular decision processes, including proliferation, differentiation, and phenotypic s...
Bistability arises within a wide range of biological systems from the A phage switch in bacteria to ...
The balance between maintenance of the stem cell state and terminal differentiation is influenced by...
Turning genes on and off is a mechanism by which cells and tissues make phenotypic decisions. Gene n...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
Many cellular processes require decision making mechanisms, which must act reliably even in the unav...
BACKGROUND: Cellular transformations which involve a significant phenotypical change of the cell's s...
Cellular transformations which involve a significant phenotypical change of the cell’s state use bis...
Noise caused by fluctuations at the molecular level is a fundamental part of intracellular processes...
SummaryProgenitor cells within a clonal population show variable proclivity toward lineage commitmen...
Stochastic fluctuations, or noise, are ubiquitous in biological systems and play an important role i...
Noise can induce various dynamical behaviors in nonlinear systems. White noise perturbed systems hav...
Cellular decision making is the process whereby cells assume different, functionally important and h...
Many cellular decision processes, including proliferation, differentiation, and phenotypic switching...
Progenitor cells within a clonal population show variable proclivity toward lineage commitment and d...
<div><p>Many cellular decision processes, including proliferation, differentiation, and phenotypic s...
Bistability arises within a wide range of biological systems from the A phage switch in bacteria to ...
The balance between maintenance of the stem cell state and terminal differentiation is influenced by...
Turning genes on and off is a mechanism by which cells and tissues make phenotypic decisions. Gene n...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...