Biological networks are inherently modular, yet little is known about how modules are assembled to enable coordinated and complex functions. We used RNAi and time series, whole-genome microarray analyses to systematically perturb and characterize components of a Caenorhabditis elegans lineage-specific transcriptional regulatory network. These data are supported by selected reporter gene analyses and comprehensive yeast one-hybrid and promoter sequence analyses. Based on these results, we define and characterize two modules composed of muscle- and epidermal-specifying transcription factors that function together within a single cell lineage to robustly specify multiple cell types. The expression of these two modules, although positively regu...
The development and homeostasis of multicellular animals requires precise coordination of cell divis...
distinct groups of genes are turned ‘on ’ or ‘off ’, depending representing TUs as nodes, and transc...
Gene regulatory networks lie at the heart of cellular computation. In these networks, intracellular ...
Large amounts of effort have been invested in trying to understand how a single genome is able to sp...
The Caenorhabditis elegans hermaphrodite is a complex multicellular animal that is composed of 959 s...
Differential gene expression governs the development, function and pathology of multicellular organi...
Transcription regulatory networks play a pivotal role in the development, function, and pathology of...
Large amounts of effort have been invested in trying to understand how a single genome is able to sp...
Cell-type specific regulation of transcription drives the production of the myriad of different cell...
A wealth of physical interaction data between transcription factors (TFs) and DNA has been generated...
With both the complete sequences of multicellular organisms as well as the emerging results from ge...
Regulatory networks that control gene expression are important in diverse biological contexts includ...
SummaryTranscription regulatory networks consist of physical and functional interactions between tra...
Gene regulatory networks (GRNs) consist of different molecular interactions that closely work toget...
Transcription regulatory networks consist of physical and functional interactions between transcript...
The development and homeostasis of multicellular animals requires precise coordination of cell divis...
distinct groups of genes are turned ‘on ’ or ‘off ’, depending representing TUs as nodes, and transc...
Gene regulatory networks lie at the heart of cellular computation. In these networks, intracellular ...
Large amounts of effort have been invested in trying to understand how a single genome is able to sp...
The Caenorhabditis elegans hermaphrodite is a complex multicellular animal that is composed of 959 s...
Differential gene expression governs the development, function and pathology of multicellular organi...
Transcription regulatory networks play a pivotal role in the development, function, and pathology of...
Large amounts of effort have been invested in trying to understand how a single genome is able to sp...
Cell-type specific regulation of transcription drives the production of the myriad of different cell...
A wealth of physical interaction data between transcription factors (TFs) and DNA has been generated...
With both the complete sequences of multicellular organisms as well as the emerging results from ge...
Regulatory networks that control gene expression are important in diverse biological contexts includ...
SummaryTranscription regulatory networks consist of physical and functional interactions between tra...
Gene regulatory networks (GRNs) consist of different molecular interactions that closely work toget...
Transcription regulatory networks consist of physical and functional interactions between transcript...
The development and homeostasis of multicellular animals requires precise coordination of cell divis...
distinct groups of genes are turned ‘on ’ or ‘off ’, depending representing TUs as nodes, and transc...
Gene regulatory networks lie at the heart of cellular computation. In these networks, intracellular ...