Quantitative models of cis-regulatory activity have the potential to improve our mechanistic understanding of transcriptional regulation. However, the few models available today have been based on simplistic assumptions about the sequences being modeled, or heuristic approximations of the underlying regulatory mechanisms. We have developed a thermodynamics-based model to predict gene expression driven by any DNA sequence, as a function of transcription factor concentrations and their DNA-binding specificities. It uses statistical thermodynamics theory to model not only protein-DNA interaction, but also the effect of DNA-bound activators and repressors on gene expression. In addition, the model incorporates mechanistic features such as syner...
Summary: Transgenic reporters allow the measurement of regulatory DNA activity in vivo and consequen...
Transcription factor binding sites (TFBS) are being discovered at a rapid pace1, 2. We must now begi...
Transcription is a fundamental and tightly regulated process in living cells and a key step in the e...
A central challenge in regulatory genomics today is to understand the precise relationship between r...
Understanding transcriptional regulation quantitatively is a crucial step towards uncovering and ult...
A challenge in quantitative biology is to predict output patterns of gene expression from knowledge ...
A challenge in quantitative biology is to predict output patterns of gene expression from knowledge ...
Summary To understand the relationship between an enhancer DNA sequence and quantitative gene expres...
Within the non-coding portions of the genome lie sets of instructions that specify when, where, and ...
AbstractPrediction of gene expression levels from regulatory sequences is one of the major challenge...
We derive a statistical model of transcriptional activation using equilibrium thermodynamics of chem...
Transcription factors that drive complex patterns of gene expression during animal development bind ...
Metazoan gene expression is controlled through the action of long stretches of noncoding DNA that co...
Transgenic reporters allow the measurement of regulatory DNA activity in vivo and consequently ...
Transgenic reporters allow the measurement of regulatory DNA activity in vivo and consequently ...
Summary: Transgenic reporters allow the measurement of regulatory DNA activity in vivo and consequen...
Transcription factor binding sites (TFBS) are being discovered at a rapid pace1, 2. We must now begi...
Transcription is a fundamental and tightly regulated process in living cells and a key step in the e...
A central challenge in regulatory genomics today is to understand the precise relationship between r...
Understanding transcriptional regulation quantitatively is a crucial step towards uncovering and ult...
A challenge in quantitative biology is to predict output patterns of gene expression from knowledge ...
A challenge in quantitative biology is to predict output patterns of gene expression from knowledge ...
Summary To understand the relationship between an enhancer DNA sequence and quantitative gene expres...
Within the non-coding portions of the genome lie sets of instructions that specify when, where, and ...
AbstractPrediction of gene expression levels from regulatory sequences is one of the major challenge...
We derive a statistical model of transcriptional activation using equilibrium thermodynamics of chem...
Transcription factors that drive complex patterns of gene expression during animal development bind ...
Metazoan gene expression is controlled through the action of long stretches of noncoding DNA that co...
Transgenic reporters allow the measurement of regulatory DNA activity in vivo and consequently ...
Transgenic reporters allow the measurement of regulatory DNA activity in vivo and consequently ...
Summary: Transgenic reporters allow the measurement of regulatory DNA activity in vivo and consequen...
Transcription factor binding sites (TFBS) are being discovered at a rapid pace1, 2. We must now begi...
Transcription is a fundamental and tightly regulated process in living cells and a key step in the e...