We report the results of operator state fluctuations in gene expression for the entire bacterial growth cycle, using single-cell analysis and synthetic unregulated and negative-feedback transcription regulatory gene circuits. In the unregulated circuit, during the cell cycle, we observe a crossover from log-normal-to-normal distribution of expressed proteins and an unusual linear dependence of their standard deviation on the mean gene expression levels. With negative-feedback circuits we find the existence of bimodality as the cell cycle progresses. We suggest that such long-tail and bimodal distributions may be used as selection mechanisms in developmental switches and for assigning cell identity
The quantitative relation between transcription factor concentrations and the rate of protein produc...
AbstractGene expression is stochastic, and noise that arises from the stochastic nature of biochemic...
Gene transcription is a noisy process, and cell division cycle is an important source of gene transc...
AbstractWe report the results of operator state fluctuations in gene expression for the entire bacte...
AbstractWe report the results of operator state fluctuations in gene expression for the entire bacte...
We report the results of operator state fluctuations in gene expression for the entire bacterial gro...
We report the results of operator state fluctuations in gene expression for the entire bacterial gro...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...
In growing cells, protein synthesis and cell growth are typically not synchronous, and, thus, protei...
Stochastic gene expression causes phenotypic heterogeneity in a population of genetically identical ...
Single-cell experiments of simple regulatory networks can markedly differ from cell population exper...
The quantitative relation between transcription factor concentrations and the rate of protein produc...
AbstractA general dynamic description of protein synthesis was employed to quantify different source...
To understand the full breadth of the physiological implications of random fluctuations, of crucial ...
One of the qualities that allow bacterial cells to survive in diverse, fluctuating environments is ph...
The quantitative relation between transcription factor concentrations and the rate of protein produc...
AbstractGene expression is stochastic, and noise that arises from the stochastic nature of biochemic...
Gene transcription is a noisy process, and cell division cycle is an important source of gene transc...
AbstractWe report the results of operator state fluctuations in gene expression for the entire bacte...
AbstractWe report the results of operator state fluctuations in gene expression for the entire bacte...
We report the results of operator state fluctuations in gene expression for the entire bacterial gro...
We report the results of operator state fluctuations in gene expression for the entire bacterial gro...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...
In growing cells, protein synthesis and cell growth are typically not synchronous, and, thus, protei...
Stochastic gene expression causes phenotypic heterogeneity in a population of genetically identical ...
Single-cell experiments of simple regulatory networks can markedly differ from cell population exper...
The quantitative relation between transcription factor concentrations and the rate of protein produc...
AbstractA general dynamic description of protein synthesis was employed to quantify different source...
To understand the full breadth of the physiological implications of random fluctuations, of crucial ...
One of the qualities that allow bacterial cells to survive in diverse, fluctuating environments is ph...
The quantitative relation between transcription factor concentrations and the rate of protein produc...
AbstractGene expression is stochastic, and noise that arises from the stochastic nature of biochemic...
Gene transcription is a noisy process, and cell division cycle is an important source of gene transc...