© 2018 The Author(s) 2018. Published by Oxford University Press. All rights reserved. Interactions between proteins and small molecules are critical for biological functions. These interactions often occur in small cavities within protein structures, known as ligand-binding pockets. Understanding the physicochemical qualities of binding pockets is essential to improve not only our basic knowledge of biological systems, but also drug development procedures. In order to quantify similarities among pockets in terms of their geometries and chemical properties, either bound ligands can be compared to one another or binding sites can be matched directly. Both perspectives routinely take advantage of computational methods including various techniq...
Background Many of solved tertiary structures of unknown functions do not have global sequence and s...
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...
A fundamental task in bioinformatics involves a transfer of knowledge from one protein molecule onto...
We have developed a new computational algorithm for de novo identification of protein-ligand bindin...
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 Identification and evaluation of surface binding-pockets and occluded cavities are initia...
Background Identification and evaluation of surface binding-pockets and occluded cavities are initia...
Engineering specific interactions between proteins and small molecules is extremely useful for biolo...
Engineering specific interactions between proteins and small molecules is extremely useful for biolo...
International audienceBACKGROUND: Predicting which molecules can bind to a given binding site of a p...
Background Many of solved tertiary structures of unknown functions do not have global sequence and s...
<div><p>Engineering specific interactions between proteins and small molecules is extremely useful f...
Background: Many of solved tertiary structures of unknown functions do not have global sequence and ...
Background Many of solved tertiary structures of unknown functions do not have global sequence and s...
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...
A fundamental task in bioinformatics involves a transfer of knowledge from one protein molecule onto...
We have developed a new computational algorithm for de novo identification of protein-ligand bindin...
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 Identification and evaluation of surface binding-pockets and occluded cavities are initia...
Background Identification and evaluation of surface binding-pockets and occluded cavities are initia...
Engineering specific interactions between proteins and small molecules is extremely useful for biolo...
Engineering specific interactions between proteins and small molecules is extremely useful for biolo...
International audienceBACKGROUND: Predicting which molecules can bind to a given binding site of a p...
Background Many of solved tertiary structures of unknown functions do not have global sequence and s...
<div><p>Engineering specific interactions between proteins and small molecules is extremely useful f...
Background: Many of solved tertiary structures of unknown functions do not have global sequence and ...
Background Many of solved tertiary structures of unknown functions do not have global sequence and s...
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...