Abstract Background The development of high-throughput technologies such as yeast two-hybrid systems and mass spectrometry technologies has made it possible to generate large protein-protein interaction (PPI) datasets. Mining these datasets for underlying biological knowledge has, however, remained a challenge. Results A total of 3108 sequence signatures were found, each of which was shared by a set of guest proteins interacting with one of 944 host proteins in Saccharomyces cerevisiae genome. Approximately 94% of these sequence signatures matched entries in InterPro member databases. We identified 84 distinct sequence signatures from the remaining 172 unknown signatures. The signature sharing information was then applied in predicting sub-...
Background High-throughput screening of protein-protein interactions opens new systems biology persp...
Background: High-throughput screening of protein-protein interactions opens new systems biology pers...
The study of protein-protein interactions (PPIs) can be very important for the understanding of biol...
Background: The development of high-throughput technologies such as yeast two- hybrid systems and ma...
Protein-protein interaction (PPI) maps provide insight into cellular biology and have received consi...
Protein domains are conserved and functionally independent structures that play an important role in...
Introduction: Proteins within the cell act as part of complex networks, which allow pathways and pro...
Motivation: Protein-protein interaction, mediated by protein interaction sites, is intrinsic to many...
Systematic identification of protein-protein interactions (PPIs) on a genome scale has become an imp...
Abstract Background Identification of protein interac...
Identifying protein-protein interactions is crucial for understanding cellular functions. Genomic da...
Detecting protein-protein interactions is a central problem in computational biology and aberrant su...
Proteins and their interactions lie at the heart of most underlying biological processes. Consequent...
Abstract Background As protein interactions mediate most cellular mechanisms, protein-protein intera...
In recent years, the Munich Information Center for Protein Sequences (MIPS) yeast protein-protein in...
Background High-throughput screening of protein-protein interactions opens new systems biology persp...
Background: High-throughput screening of protein-protein interactions opens new systems biology pers...
The study of protein-protein interactions (PPIs) can be very important for the understanding of biol...
Background: The development of high-throughput technologies such as yeast two- hybrid systems and ma...
Protein-protein interaction (PPI) maps provide insight into cellular biology and have received consi...
Protein domains are conserved and functionally independent structures that play an important role in...
Introduction: Proteins within the cell act as part of complex networks, which allow pathways and pro...
Motivation: Protein-protein interaction, mediated by protein interaction sites, is intrinsic to many...
Systematic identification of protein-protein interactions (PPIs) on a genome scale has become an imp...
Abstract Background Identification of protein interac...
Identifying protein-protein interactions is crucial for understanding cellular functions. Genomic da...
Detecting protein-protein interactions is a central problem in computational biology and aberrant su...
Proteins and their interactions lie at the heart of most underlying biological processes. Consequent...
Abstract Background As protein interactions mediate most cellular mechanisms, protein-protein intera...
In recent years, the Munich Information Center for Protein Sequences (MIPS) yeast protein-protein in...
Background High-throughput screening of protein-protein interactions opens new systems biology persp...
Background: High-throughput screening of protein-protein interactions opens new systems biology pers...
The study of protein-protein interactions (PPIs) can be very important for the understanding of biol...