To build transcription regulatory networks, transcription factor binding must be analyzed in cells grown under different conditions because their responses and targets differ depending on environmental conditions. We performed wholegenome analysis of the DNA binding of five Saccharomyces cerevisiae transcription factors involved in lipid metabolism, Ino2, Ino4, Hap1, Oaf1, and Pip2, in response to four different environmental conditions in chemostat cultures, which allowed us to keep the specific growth rate constant. Chromatin immunoprecipitation with lambda exonuclease digestion (ChIP-exo) enabled the detection of binding events at a high resolution. We discovered a large number of unidentified targets and thus expanded functions for each...
textThe genome of yeast Saccharomyces cerevisiae encodes more than 5,800 genes with well controlled...
A central challenge to post-genomic biology is to elucidate the cellular networks that underlie biol...
A central challenge to post-genomic biology is to elucidate the cellular networks that underlie biol...
Transcription factors (TF) are central to transcriptional regulation, but they are often studied in ...
We describe the use of model-driven analysis of multiple data types relevant to transcriptional regu...
Life; perhaps it is bold to start an abstract with this powerful word, but this is where I will star...
The state and behavior of any living cell is controlled by a complex interplay of different regulato...
Transcription plays a key role in cellular processes and its regulation is of paramount importance. ...
Transcription plays a key role in cellular processes and its regulation is of paramount importance. ...
The Yeast Metabolic Cycle (YMC) is a model system in which levels of around 60% of the yeast transcr...
BACKGROUND. An important goal in post-genomic research is discovering the network of interactions be...
Which transcription factors control the distribution of metabolic fluxes under a given condition? We...
The Yeast Metabolic Cycle (YMC) is a model system in which levels of around 60% of the yeast transcr...
The Yeast Metabolic Cycle (YMC) is a model system in which levels of around 60% of the yeast transcr...
textThe genome of yeast Saccharomyces cerevisiae encodes more than 5,800 genes with well controlled...
textThe genome of yeast Saccharomyces cerevisiae encodes more than 5,800 genes with well controlled...
A central challenge to post-genomic biology is to elucidate the cellular networks that underlie biol...
A central challenge to post-genomic biology is to elucidate the cellular networks that underlie biol...
Transcription factors (TF) are central to transcriptional regulation, but they are often studied in ...
We describe the use of model-driven analysis of multiple data types relevant to transcriptional regu...
Life; perhaps it is bold to start an abstract with this powerful word, but this is where I will star...
The state and behavior of any living cell is controlled by a complex interplay of different regulato...
Transcription plays a key role in cellular processes and its regulation is of paramount importance. ...
Transcription plays a key role in cellular processes and its regulation is of paramount importance. ...
The Yeast Metabolic Cycle (YMC) is a model system in which levels of around 60% of the yeast transcr...
BACKGROUND. An important goal in post-genomic research is discovering the network of interactions be...
Which transcription factors control the distribution of metabolic fluxes under a given condition? We...
The Yeast Metabolic Cycle (YMC) is a model system in which levels of around 60% of the yeast transcr...
The Yeast Metabolic Cycle (YMC) is a model system in which levels of around 60% of the yeast transcr...
textThe genome of yeast Saccharomyces cerevisiae encodes more than 5,800 genes with well controlled...
textThe genome of yeast Saccharomyces cerevisiae encodes more than 5,800 genes with well controlled...
A central challenge to post-genomic biology is to elucidate the cellular networks that underlie biol...
A central challenge to post-genomic biology is to elucidate the cellular networks that underlie biol...