Abstract — Gene products (RNAs, proteins) often occur at low molecular counts inside individual cells, and hence are subject to considerable random fluctuations (noise) in copy number over time. Not surprisingly, cells encode diverse regulatory mechanisms to buffer noise. One such mechanism is the incoherent feedforward circuit. We analyze a simplistic version of this circuit, where an upstream regulator X affects both the production and degradation of a protein Y. Thus, any random increase in X’s copy numbers would increase both production and degradation, keeping Y levels unchanged. To study its stochastic dynamics, we formulate this network into a mathematical model using the Chemical Master Equation formulation. We prove that if the fun...
In bacterial cells, gene expression, metabolism, and growth are highly interdependent and tightly co...
It is well known that the kinetics of an intracellular biochemical network is stochastic. This is du...
In bacterial cells, gene expression, metabolism, and growth are highly interdependent and tightly co...
At the single cell level, bacterial gene expression is a highly stochastic process. Protein concentr...
AbstractBiochemical reaction networks are subjected to large fluctuations attributable to small mole...
Abstract Gene networks arise due to the interaction of genes through their protein products. Modelin...
Stochasticity is both exploited and controlled by cells. Although the intrinsic stochasticity inhere...
AbstractBiochemical reaction networks are subjected to large fluctuations attributable to small mole...
Abstract. The phenomena of stochasticity in biochemical processes have been intrigu-ing life scienti...
<div><p>Random fluctuations in the amount of cellular components like mRNA and protein molecules are...
In bacterial cells, gene expression, metabolism, and growth are highly interdependent and tightly co...
In bacterial cells, gene expression, metabolism, and growth are highly interdependent and tightly co...
Random fluctuations in the amount of cellular components like mRNA and protein molecules are inevita...
In bacterial cells, gene expression, metabolism, and growth are highly interdependent and tightly co...
In bacterial cells, gene expression, metabolism, and growth are highly interdependent and tightly co...
In bacterial cells, gene expression, metabolism, and growth are highly interdependent and tightly co...
It is well known that the kinetics of an intracellular biochemical network is stochastic. This is du...
In bacterial cells, gene expression, metabolism, and growth are highly interdependent and tightly co...
At the single cell level, bacterial gene expression is a highly stochastic process. Protein concentr...
AbstractBiochemical reaction networks are subjected to large fluctuations attributable to small mole...
Abstract Gene networks arise due to the interaction of genes through their protein products. Modelin...
Stochasticity is both exploited and controlled by cells. Although the intrinsic stochasticity inhere...
AbstractBiochemical reaction networks are subjected to large fluctuations attributable to small mole...
Abstract. The phenomena of stochasticity in biochemical processes have been intrigu-ing life scienti...
<div><p>Random fluctuations in the amount of cellular components like mRNA and protein molecules are...
In bacterial cells, gene expression, metabolism, and growth are highly interdependent and tightly co...
In bacterial cells, gene expression, metabolism, and growth are highly interdependent and tightly co...
Random fluctuations in the amount of cellular components like mRNA and protein molecules are inevita...
In bacterial cells, gene expression, metabolism, and growth are highly interdependent and tightly co...
In bacterial cells, gene expression, metabolism, and growth are highly interdependent and tightly co...
In bacterial cells, gene expression, metabolism, and growth are highly interdependent and tightly co...
It is well known that the kinetics of an intracellular biochemical network is stochastic. This is du...
In bacterial cells, gene expression, metabolism, and growth are highly interdependent and tightly co...