Information about the physical association of proteins is extensively used for studying cellular processes and disease mechanisms. However, complete experimental mapping of the human interactome will remain prohibitively difficult in the near future. Here we present a map of predicted human protein interactions that distinguishes functional association from physical binding. Our network classifies more than 5 million protein pairs predicting 94,009 new interactions with high confidence. We experimentally tested a subset of these predictions using yeast two-hybrid analysis and affinity purification followed by quantitative mass spectrometry. Thus we identified 462 new protein-protein interactions and confirmed the predictive power of the net...
Protein complexes enact most biochemical functions in the cell. Dynamic interactions between protein...
“Avoiding fusion of illusion and confusion – reducing bias in network-based analyses” Protein-protei...
In this paper we aim at investigating possible correlations between the number of putative interacti...
Information about the physical association of proteins is extensively used for studying cellular pro...
Information about the physical association of proteins is extensively used for studying cellular pro...
Information about the physical association of proteins is extensively used for studying cellular pro...
Information about the physical association of proteins is extensively used for studying cellular pro...
High-throughput detection of protein interactions has had a major impact in our understanding of the...
High-throughput assays, such as yeast two-hybrid system, have generated a huge amount of protein-pro...
Interactome maps are valuable resources to elucidate protein function and disease mechanisms. Here, ...
Most of the cellular functions are the result of the concerted action of complexes of proteins formi...
Most of the cellular functions are the result of the concerted action of complexes of proteins formi...
peer reviewedInteractome maps are valuable resources to elucidate protein function and disease mecha...
Most of the cellular functions are the result of the concerted action of complexes of proteins formi...
Most of the cellular functions are the result of the concerted action of complexes of proteins formi...
Protein complexes enact most biochemical functions in the cell. Dynamic interactions between protein...
“Avoiding fusion of illusion and confusion – reducing bias in network-based analyses” Protein-protei...
In this paper we aim at investigating possible correlations between the number of putative interacti...
Information about the physical association of proteins is extensively used for studying cellular pro...
Information about the physical association of proteins is extensively used for studying cellular pro...
Information about the physical association of proteins is extensively used for studying cellular pro...
Information about the physical association of proteins is extensively used for studying cellular pro...
High-throughput detection of protein interactions has had a major impact in our understanding of the...
High-throughput assays, such as yeast two-hybrid system, have generated a huge amount of protein-pro...
Interactome maps are valuable resources to elucidate protein function and disease mechanisms. Here, ...
Most of the cellular functions are the result of the concerted action of complexes of proteins formi...
Most of the cellular functions are the result of the concerted action of complexes of proteins formi...
peer reviewedInteractome maps are valuable resources to elucidate protein function and disease mecha...
Most of the cellular functions are the result of the concerted action of complexes of proteins formi...
Most of the cellular functions are the result of the concerted action of complexes of proteins formi...
Protein complexes enact most biochemical functions in the cell. Dynamic interactions between protein...
“Avoiding fusion of illusion and confusion – reducing bias in network-based analyses” Protein-protei...
In this paper we aim at investigating possible correlations between the number of putative interacti...