Protein interaction domain families that modulate the formation of macromolecular complexes recognize specific sequence or structural motifs. For instance SH3 and WW domains bind to polyproline peptides while SH2 and FHA domains bind to peptides phosphorylated in Tyr and Thr respectively. Within each family, variations in the chemical characteristics of the domain binding pocket modulate a finer peptide recognition specificity and, as a consequence, determine the selection of functional protein partners in vivo. In the proteomic era there is the need for reliable inference methods to help restricting the sequence space of the putative targets to be confirmed experimentally by more laborious experimental approaches. Here we will review the p...
Peptide-recognition modules (PRMs) are used throughout biology to mediate protein-protein interactio...
AbstractAn increasing number of SH3 domain–ligand interactions continue to be described that involve...
SH3 domains constitute a family of protein-protein interaction modules that bind to peptides display...
Protein interaction domain families that modulate the formation of macromolecular complexes recogniz...
AbstractProtein interaction domain families that modulate the formation of macromolecular complexes ...
AbstractPeptide-binding domains play a critical role in regulation of cellular processes by mediatin...
We have designed a repertoire of 10(7) different SH3 domains by grafting the residues that are repre...
MOTIVATION: Unravelling the rules underlying protein-protein and protein-ligand interactions is a cr...
BACKGROUND: The SH3 domain family is one of the most representative and widely studied cases of so-c...
The SH3 domain has been shown recently to bind peptide sequences that lack the canonical PxxP motif....
We have developed a procedure to predict the peptide binding specificity of an SH3 domain from its s...
MOTIVATION: Unravelling the rules underlying protein-protein and protein-ligand interactions is a cr...
We have developed a procedure to predict the peptide binding specificity of an SH3 domain from its s...
Peptide-recognition modules (PRMs) are used throughout biology to mediate protein–protein interactio...
Peptide-recognition modules (PRMs) are used throughout biology to mediate protein-protein interactio...
AbstractAn increasing number of SH3 domain–ligand interactions continue to be described that involve...
SH3 domains constitute a family of protein-protein interaction modules that bind to peptides display...
Protein interaction domain families that modulate the formation of macromolecular complexes recogniz...
AbstractProtein interaction domain families that modulate the formation of macromolecular complexes ...
AbstractPeptide-binding domains play a critical role in regulation of cellular processes by mediatin...
We have designed a repertoire of 10(7) different SH3 domains by grafting the residues that are repre...
MOTIVATION: Unravelling the rules underlying protein-protein and protein-ligand interactions is a cr...
BACKGROUND: The SH3 domain family is one of the most representative and widely studied cases of so-c...
The SH3 domain has been shown recently to bind peptide sequences that lack the canonical PxxP motif....
We have developed a procedure to predict the peptide binding specificity of an SH3 domain from its s...
MOTIVATION: Unravelling the rules underlying protein-protein and protein-ligand interactions is a cr...
We have developed a procedure to predict the peptide binding specificity of an SH3 domain from its s...
Peptide-recognition modules (PRMs) are used throughout biology to mediate protein–protein interactio...
Peptide-recognition modules (PRMs) are used throughout biology to mediate protein-protein interactio...
AbstractAn increasing number of SH3 domain–ligand interactions continue to be described that involve...
SH3 domains constitute a family of protein-protein interaction modules that bind to peptides display...