Knowledge of protein-ligand interactions is essential to understand several biological processes and important for applications ranging from understanding protein function to drug discovery and protein engineering. Here, we describe an algorithm for the comparison of three-dimensional ligand-binding sites in protein structures. A previously described algorithm, PocketMatch (version 1.0) is optimised, expanded, and MPI-enabled for parallel execution. PocketMatch (version 2.0) rapidly quantifies binding-site similarity based on structural descriptors such as residue nature and interatomic distances. Atomic-scale alignments may also be obtained from amino acid residue pairings generated. It allows an end-user to compute database-wide, all-to-a...
<p>Natural compounds or drugs can be promiscuous, i.e. they may bind to several distinct proteins. S...
We have developed a new computational algorithm for de novo identification of protein-ligand bindin...
Abstract Background Detecting similar ligand-binding sites in globally unrelated proteins has a wide...
Knowledge of protein-ligand interactions is essential to understand several biological processes and...
Knowledge of protein-ligand interactions is essential to understand several biological processes and...
Recognizing similarities and deriving relationships among protein molecules is a fundamental require...
A fundamental task in bioinformatics involves a transfer of knowledge from one protein molecule onto...
A fundamental task in bioinformatics involves a transfer of knowledge from one protein molecule onto...
A fundamental task in bioinformatics involves a transfer of knowledge from one protein molecule onto...
Background: Recognizing similarities and deriving relationships among protein molecules is a fundame...
Background: Recognizing similarities and deriving relationships among protein molecules is a fundame...
The Pocket-Finder algorithm identifies the location of ligand binding sites in a protein and is a fu...
International audienceBACKGROUND: Predicting which molecules can bind to a given binding site of a p...
International audienceBACKGROUND: Predicting which molecules can bind to a given binding site of a p...
International audienceBACKGROUND: Predicting which molecules can bind to a given binding site of a p...
<p>Natural compounds or drugs can be promiscuous, i.e. they may bind to several distinct proteins. S...
We have developed a new computational algorithm for de novo identification of protein-ligand bindin...
Abstract Background Detecting similar ligand-binding sites in globally unrelated proteins has a wide...
Knowledge of protein-ligand interactions is essential to understand several biological processes and...
Knowledge of protein-ligand interactions is essential to understand several biological processes and...
Recognizing similarities and deriving relationships among protein molecules is a fundamental require...
A fundamental task in bioinformatics involves a transfer of knowledge from one protein molecule onto...
A fundamental task in bioinformatics involves a transfer of knowledge from one protein molecule onto...
A fundamental task in bioinformatics involves a transfer of knowledge from one protein molecule onto...
Background: Recognizing similarities and deriving relationships among protein molecules is a fundame...
Background: Recognizing similarities and deriving relationships among protein molecules is a fundame...
The Pocket-Finder algorithm identifies the location of ligand binding sites in a protein and is a fu...
International audienceBACKGROUND: Predicting which molecules can bind to a given binding site of a p...
International audienceBACKGROUND: Predicting which molecules can bind to a given binding site of a p...
International audienceBACKGROUND: Predicting which molecules can bind to a given binding site of a p...
<p>Natural compounds or drugs can be promiscuous, i.e. they may bind to several distinct proteins. S...
We have developed a new computational algorithm for de novo identification of protein-ligand bindin...
Abstract Background Detecting similar ligand-binding sites in globally unrelated proteins has a wide...