AbstractHerein we report on the effects that different stochastic contributions induce in bacterial colonies in terms of protein concentration and production. In particular, we consider for what we believe to be the first time cell-to-cell diversity due to the unavoidable randomness of the cell-cycle duration and its interplay with other noise sources. To that end, we model a recent experimental setup that implements a protein dilution protocol by means of division events to characterize the gene regulatory function at the single cell level. This approach allows us to investigate the effect of different stochastic terms upon the total randomness experimentally reported for the gene regulatory function. In addition, we show that the interpla...
AbstractChemical reactions in cells are subject to intense stochastic fluctuations. An important que...
Inside individual cells, expression of genes is inherently stochastic and manifests as cell-to-cell ...
In this article, we quantitatively study, through stochastic models, the effects of several intracel...
Expression of many genes varies as a cell transitions through different cell-cycle stages. How coupl...
Expression of many genes varies as a cell transitions through different cell-cycle stages. How coupl...
Expression of many genes varies as a cell transitions through different cell-cycle stages. How coupl...
At the single cell level, bacterial gene expression is a highly stochastic process. Protein concentr...
Inside individual cells, expression of genes is inherently stochastic and manifests as cell-to-cell ...
Publisher's PDFInside individual cells, expression of genes is inherently stochastic and manifests a...
In growing cells, protein synthesis and cell growth are typically not synchronous, and, thus, protei...
International audienceClassical stochastic models of protein production usually do not consider seve...
International audienceClassical stochastic models of protein production usually do not consider seve...
Inside individual cells, expression of genes is inherently stochastic and manifests as cell-to-cell ...
Inside individual cells, expression of genes is inherently stochastic and manifests as cell-to-cell ...
Inside individual cells, expression of genes is inherently stochastic and manifests as cell-to-cell ...
AbstractChemical reactions in cells are subject to intense stochastic fluctuations. An important que...
Inside individual cells, expression of genes is inherently stochastic and manifests as cell-to-cell ...
In this article, we quantitatively study, through stochastic models, the effects of several intracel...
Expression of many genes varies as a cell transitions through different cell-cycle stages. How coupl...
Expression of many genes varies as a cell transitions through different cell-cycle stages. How coupl...
Expression of many genes varies as a cell transitions through different cell-cycle stages. How coupl...
At the single cell level, bacterial gene expression is a highly stochastic process. Protein concentr...
Inside individual cells, expression of genes is inherently stochastic and manifests as cell-to-cell ...
Publisher's PDFInside individual cells, expression of genes is inherently stochastic and manifests a...
In growing cells, protein synthesis and cell growth are typically not synchronous, and, thus, protei...
International audienceClassical stochastic models of protein production usually do not consider seve...
International audienceClassical stochastic models of protein production usually do not consider seve...
Inside individual cells, expression of genes is inherently stochastic and manifests as cell-to-cell ...
Inside individual cells, expression of genes is inherently stochastic and manifests as cell-to-cell ...
Inside individual cells, expression of genes is inherently stochastic and manifests as cell-to-cell ...
AbstractChemical reactions in cells are subject to intense stochastic fluctuations. An important que...
Inside individual cells, expression of genes is inherently stochastic and manifests as cell-to-cell ...
In this article, we quantitatively study, through stochastic models, the effects of several intracel...