Abstract Background Large-scale studies have revealed networks of various biological interaction types, such as protein-protein interaction, genetic interaction, transcriptional regulation, sequence homology, and expression correlation. Recurring patterns of interconnection, or 'network motifs', have revealed biological insights for networks containing either one or two types of interaction. Results To study more complex relationships involving multiple biological interaction types, we assembled an integrated Saccharomyces cerevisiae network in which nodes represent genes (or their protein products) and differently colored links repr...
Most processes in the cell are delivered by protein complexes, rather than individual proteins. Whil...
Systems biology and complex networks research will turn biology into a more precise and synthetic di...
Co-expressed genes often share similar functions, and gene co-expression networks have been widely u...
Abstract Background Large-scale studies have revealed...
BACKGROUND:Large-scale studies have revealed networks of various biological interaction types, such ...
Topological network motifs represent functional relationships within and between regulatory and prot...
Topological network motifs represent functional relationships within and between regulatory and prot...
BackgroundCellular functions are regulated by complex webs of interactions that might be schematical...
BackgroundCellular functions are regulated by complex webs of interactions that might be schematical...
Abstract—The concept of a network motif—a small set of interacting genes which produce a predictable...
Abstract Background Gene and protein interactions are commonly represented as networks, with the gen...
Most processes in the cell are delivered by protein complexes, rather than individual proteins. Whil...
Numerous complex networks composed of diverse interactions, either physical interactions or functio...
Co-expressed genes often share similar functions, and gene co-expression networks have been widely u...
Most processes in the cell are delivered by protein complexes, rather than individual proteins. Whil...
Most processes in the cell are delivered by protein complexes, rather than individual proteins. Whil...
Systems biology and complex networks research will turn biology into a more precise and synthetic di...
Co-expressed genes often share similar functions, and gene co-expression networks have been widely u...
Abstract Background Large-scale studies have revealed...
BACKGROUND:Large-scale studies have revealed networks of various biological interaction types, such ...
Topological network motifs represent functional relationships within and between regulatory and prot...
Topological network motifs represent functional relationships within and between regulatory and prot...
BackgroundCellular functions are regulated by complex webs of interactions that might be schematical...
BackgroundCellular functions are regulated by complex webs of interactions that might be schematical...
Abstract—The concept of a network motif—a small set of interacting genes which produce a predictable...
Abstract Background Gene and protein interactions are commonly represented as networks, with the gen...
Most processes in the cell are delivered by protein complexes, rather than individual proteins. Whil...
Numerous complex networks composed of diverse interactions, either physical interactions or functio...
Co-expressed genes often share similar functions, and gene co-expression networks have been widely u...
Most processes in the cell are delivered by protein complexes, rather than individual proteins. Whil...
Most processes in the cell are delivered by protein complexes, rather than individual proteins. Whil...
Systems biology and complex networks research will turn biology into a more precise and synthetic di...
Co-expressed genes often share similar functions, and gene co-expression networks have been widely u...