Abstract Background Gene and protein interactions are commonly represented as networks, with the genes or proteins comprising the nodes and the relationship between them as edges. Motifs, or small local configurations of edges and nodes that arise repeatedly, can be used to simplify the interpretation of networks. Results We examined triplet motifs in a network of quantitative epistatic genetic relationships, and found a non-random distribution of particular motif classes. Individual motif classes were found to be associated with different functional properties, suggestive of an underlying biological significance. These associations were apparent not only for motif classes, but for individual positions within the motifs. As expected, NNN (a...
Topological network motifs represent functional relationships within and between regulatory and prot...
Abstract Background An important class of interaction...
Motivation: The structural interaction of proteins and their domains in networks is one of the most ...
BACKGROUND:Large-scale studies have revealed networks of various biological interaction types, such ...
Abstract Background High-throughput screens have revealed large-scale protein interaction networks d...
Several algorithms have been recently designed to identify motifs in biological networks, particular...
Several algorithms have been recently designed to identify motifs in biological networks, particular...
Several algorithms have been recently designed to identify motifs in biological networks, particular...
Abstract Background Large-scale studies have revealed...
Abstract Background Large-scale studies have revealed...
Cellular molecules interact in complex ways, giving rise to a cell's functional outcomes. Conscienti...
Background: High-throughput screens have revealed large-scale protein interaction networks defining ...
Topological network motifs represent functional relationships within and between regulatory and prot...
BACKGROUND: Network motifs are connectivity structures that occur with significantly higher frequenc...
Abstract Background An important class of interaction...
Topological network motifs represent functional relationships within and between regulatory and prot...
Abstract Background An important class of interaction...
Motivation: The structural interaction of proteins and their domains in networks is one of the most ...
BACKGROUND:Large-scale studies have revealed networks of various biological interaction types, such ...
Abstract Background High-throughput screens have revealed large-scale protein interaction networks d...
Several algorithms have been recently designed to identify motifs in biological networks, particular...
Several algorithms have been recently designed to identify motifs in biological networks, particular...
Several algorithms have been recently designed to identify motifs in biological networks, particular...
Abstract Background Large-scale studies have revealed...
Abstract Background Large-scale studies have revealed...
Cellular molecules interact in complex ways, giving rise to a cell's functional outcomes. Conscienti...
Background: High-throughput screens have revealed large-scale protein interaction networks defining ...
Topological network motifs represent functional relationships within and between regulatory and prot...
BACKGROUND: Network motifs are connectivity structures that occur with significantly higher frequenc...
Abstract Background An important class of interaction...
Topological network motifs represent functional relationships within and between regulatory and prot...
Abstract Background An important class of interaction...
Motivation: The structural interaction of proteins and their domains in networks is one of the most ...