Abstract Background Proteins form various complexes to carry out their versatile functions in cells. The dynamic properties of protein complex formation are mainly characterized by the association rates which measures how fast these complexes can be formed. It was experimentally observed that the association rates span an extremely wide range with over ten orders of magnitudes. Identification of association rates within this spectrum for specific protein complexes is therefore essential for us to understand their functional roles. Results To tackle this problem, we integrate physics-based coarse-grained simulations into a neural-network-based classification model to estimate the range of association rates for protein complexes in a large-sc...
Almost all critical functions in cells rely on specific protein–protein interactions.Understanding t...
Protein–protein interactions (PPIs) perform various functions and regulate processes throughout cell...
Protein complexes enact most biochemical functions in the cell. Dynamic interactions between protein...
Many essential cellular processes such as signal transduction, transport, cellular motion and most r...
SummaryThe association rate constants (ka) of proteins with other proteins or other macromolecular t...
Protein interactions play a vital part in the function of a cell. As experimental techniques for det...
Background: Protein-Protein interactions (PPI) play a key role in determining the outcome of most ce...
Information about the physical association of proteins is extensively used for studying cellular pro...
Molecular function in cellular processes is governed by protein-Protein interactions (PPIs) within b...
Identification of protein–protein interactions (PPIs) is a difficult and important problem in biolog...
Abstract Background Protein-protein interactions are ubiquitous and essential for all cellular proce...
Background: Identifying protein complexes is an essential task for understanding the mechanisms of p...
Recent advances in high-throughput experimental methods for the identification of protein interactio...
Information about the physical association of proteins is extensively used for studying cellular pro...
Most of the cellular functions are the result of the concerted action of complexes of proteins formi...
Almost all critical functions in cells rely on specific protein–protein interactions.Understanding t...
Protein–protein interactions (PPIs) perform various functions and regulate processes throughout cell...
Protein complexes enact most biochemical functions in the cell. Dynamic interactions between protein...
Many essential cellular processes such as signal transduction, transport, cellular motion and most r...
SummaryThe association rate constants (ka) of proteins with other proteins or other macromolecular t...
Protein interactions play a vital part in the function of a cell. As experimental techniques for det...
Background: Protein-Protein interactions (PPI) play a key role in determining the outcome of most ce...
Information about the physical association of proteins is extensively used for studying cellular pro...
Molecular function in cellular processes is governed by protein-Protein interactions (PPIs) within b...
Identification of protein–protein interactions (PPIs) is a difficult and important problem in biolog...
Abstract Background Protein-protein interactions are ubiquitous and essential for all cellular proce...
Background: Identifying protein complexes is an essential task for understanding the mechanisms of p...
Recent advances in high-throughput experimental methods for the identification of protein interactio...
Information about the physical association of proteins is extensively used for studying cellular pro...
Most of the cellular functions are the result of the concerted action of complexes of proteins formi...
Almost all critical functions in cells rely on specific protein–protein interactions.Understanding t...
Protein–protein interactions (PPIs) perform various functions and regulate processes throughout cell...
Protein complexes enact most biochemical functions in the cell. Dynamic interactions between protein...