<p>Description of different regulatory networks of different organisms in terms of size, ubiquity and sign of autoregulation.</p><p>Most studied eukaryotic transcription factor networks (including yeast, flies and mammals) show values of <i>p</i> ranging from 0.76 to 1.</p
Gene expression in eukaryotic cells is controlled by the concerted action of various transcription f...
The transcription regulatory network is arguably the most important foundation of cellular function,...
Living cells are the product of gene expression programs involving regulated transcription of thousa...
<div><p>The evolution of transcriptional regulatory networks has thus far mostly been studied at the...
To understand how transcription factors function, it is essential to determine the range of genes th...
Transcriptional regulation is the most committed type of regulation in living cells where transcript...
Transcription networks have an unusual structure. In both prokaryotes and eukaryotes, the number of ...
We have determined how most of the transcriptional regulators encoded in the eukaryote Saccharomyces...
When averaged over the full yeast protein–protein interaction and transcriptional regulatory network...
A central challenge to post-genomic biology is to elucidate the cellular networks that underlie biol...
dynamics of these networks across organisms, which would reveal Of the several steps at which the fl...
Despite the large evolutionary distances between metazoan species, they can show remarkable commonal...
A major goal of biology is the construction of networks that predict complex system behavior. We com...
<div><p>Understanding complexity in physical, biological, social and information systems is predicat...
Understanding complexity in physical, biological, social and information systems is predicated on de...
Gene expression in eukaryotic cells is controlled by the concerted action of various transcription f...
The transcription regulatory network is arguably the most important foundation of cellular function,...
Living cells are the product of gene expression programs involving regulated transcription of thousa...
<div><p>The evolution of transcriptional regulatory networks has thus far mostly been studied at the...
To understand how transcription factors function, it is essential to determine the range of genes th...
Transcriptional regulation is the most committed type of regulation in living cells where transcript...
Transcription networks have an unusual structure. In both prokaryotes and eukaryotes, the number of ...
We have determined how most of the transcriptional regulators encoded in the eukaryote Saccharomyces...
When averaged over the full yeast protein–protein interaction and transcriptional regulatory network...
A central challenge to post-genomic biology is to elucidate the cellular networks that underlie biol...
dynamics of these networks across organisms, which would reveal Of the several steps at which the fl...
Despite the large evolutionary distances between metazoan species, they can show remarkable commonal...
A major goal of biology is the construction of networks that predict complex system behavior. We com...
<div><p>Understanding complexity in physical, biological, social and information systems is predicat...
Understanding complexity in physical, biological, social and information systems is predicated on de...
Gene expression in eukaryotic cells is controlled by the concerted action of various transcription f...
The transcription regulatory network is arguably the most important foundation of cellular function,...
Living cells are the product of gene expression programs involving regulated transcription of thousa...