To quantify gene regulation, a function is required that relates transcription factor binding to DNA (input) to the rate of mRNA synthesis from a target gene (output). Such a 'gene regulation function' (GRF) generally cannot be measured because the experimental titration of inputs and simultaneous readout of outputs is difficult. Here we show that GRFs may instead be inferred from natural changes in cellular gene expression, as exemplified for the cell cycle in the yeast S. cerevisiae. We develop this inference approach based on a time series of mRNA synthesis rates from a synchronized population of cells observed over three cell cycles. We first estimate the functional form of how input transcription factors determine mRNA output and then ...
Gene transcription is a noisy process, and cell division cycle is an important source of gene transc...
AbstractGenome-wide location analysis was used to determine how the yeast cell cycle gene expression...
Motivation: Genetic networks regulate key processes in living cells. Various methods have been sugge...
To quantify gene regulation, a function is required that relates transcription factor binding to DNA...
[[abstract]]Motivation: Genome-wide gene expression programs have been monitored and analyzed in the...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...
Abstract Background The regulation of genes in multicellular organisms is generally achieved through...
<p>Models for the control of global cell-cycle transcription have advanced from a CDK-APC/C oscillat...
Self-sustained oscillations are perhaps the most studied objects in science. The accomplishment of s...
Abstract Background Gene expression is regulated by D...
In S.cerevisiae, many genes are known to be regulated in a periodic manner coincident with the cell ...
Background: A key goal of systems biology is to understand how genomewide mRNA expression levels are...
The high complexity in the gene regulation mechanism and the prevalent noise in high-throughput dete...
BACKGROUND: A key goal of systems biology is to understand how genomewide mRNA expression levels are...
The experimental microarray data has the potential application in determining the underlying mechani...
Gene transcription is a noisy process, and cell division cycle is an important source of gene transc...
AbstractGenome-wide location analysis was used to determine how the yeast cell cycle gene expression...
Motivation: Genetic networks regulate key processes in living cells. Various methods have been sugge...
To quantify gene regulation, a function is required that relates transcription factor binding to DNA...
[[abstract]]Motivation: Genome-wide gene expression programs have been monitored and analyzed in the...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...
Abstract Background The regulation of genes in multicellular organisms is generally achieved through...
<p>Models for the control of global cell-cycle transcription have advanced from a CDK-APC/C oscillat...
Self-sustained oscillations are perhaps the most studied objects in science. The accomplishment of s...
Abstract Background Gene expression is regulated by D...
In S.cerevisiae, many genes are known to be regulated in a periodic manner coincident with the cell ...
Background: A key goal of systems biology is to understand how genomewide mRNA expression levels are...
The high complexity in the gene regulation mechanism and the prevalent noise in high-throughput dete...
BACKGROUND: A key goal of systems biology is to understand how genomewide mRNA expression levels are...
The experimental microarray data has the potential application in determining the underlying mechani...
Gene transcription is a noisy process, and cell division cycle is an important source of gene transc...
AbstractGenome-wide location analysis was used to determine how the yeast cell cycle gene expression...
Motivation: Genetic networks regulate key processes in living cells. Various methods have been sugge...