We implement a strategy for aligning two protein–protein interaction networks that combines interaction topology and protein sequence similarity to identify conserved interaction pathways and complexes. Using this approach we show that the protein–protein interaction networks of two distantly related species, Saccharomyces cerevisiae and Helicobacter pylori, harbor a large complement of evolutionarily conserved pathways, and that a large number of pathways appears to have duplicated and specialized within yeast. Analysis of these findings reveals many well characterized interaction pathways as well as many unanticipated pathways, the significance of which is reinforced by their presence in the networks of both species
In cellular systems, biophysical interactions between macromolecules underlie a complex web of funct...
Individual proteins, and small collections of proteins, have been extensively studied for at least t...
Abstract Background Protein-protein interaction (PPI)...
Interest in the evolution of protein-protein and genetic interaction networks has been rising in rec...
A number of tools for the alignment of protein-protein interaction (PPI) networks have laid the foun...
<div><p>Interest in the evolution of protein-protein and genetic interaction networks has been risin...
One of the crucial steps toward understanding the biological functions of a cellular system is to in...
Interest in the evolution of protein-protein and genetic interaction networks has been rising in rec...
Preprint versionInternational audienceMOTIVATION: Aligning protein-protein interaction (PPI) network...
One of the crucial steps toward understanding the biological functions of a cellular system is to in...
Preprint versionInternational audienceMOTIVATION: Aligning protein-protein interaction (PPI) network...
BACKGROUND:One of the crucial steps toward understanding the biological functions of a cellular syst...
Background: Protein complexes conserved across species indicate processes that are core to cellular ...
Mounting evidence shows that many protein complexes are conserved in evolution. Here we use conserva...
Our goal is to investigate protein networks conserved between different organisms. Given the protein...
In cellular systems, biophysical interactions between macromolecules underlie a complex web of funct...
Individual proteins, and small collections of proteins, have been extensively studied for at least t...
Abstract Background Protein-protein interaction (PPI)...
Interest in the evolution of protein-protein and genetic interaction networks has been rising in rec...
A number of tools for the alignment of protein-protein interaction (PPI) networks have laid the foun...
<div><p>Interest in the evolution of protein-protein and genetic interaction networks has been risin...
One of the crucial steps toward understanding the biological functions of a cellular system is to in...
Interest in the evolution of protein-protein and genetic interaction networks has been rising in rec...
Preprint versionInternational audienceMOTIVATION: Aligning protein-protein interaction (PPI) network...
One of the crucial steps toward understanding the biological functions of a cellular system is to in...
Preprint versionInternational audienceMOTIVATION: Aligning protein-protein interaction (PPI) network...
BACKGROUND:One of the crucial steps toward understanding the biological functions of a cellular syst...
Background: Protein complexes conserved across species indicate processes that are core to cellular ...
Mounting evidence shows that many protein complexes are conserved in evolution. Here we use conserva...
Our goal is to investigate protein networks conserved between different organisms. Given the protein...
In cellular systems, biophysical interactions between macromolecules underlie a complex web of funct...
Individual proteins, and small collections of proteins, have been extensively studied for at least t...
Abstract Background Protein-protein interaction (PPI)...