Events6th International Electronic Conference on Medicinal Chemistry
Published
This submission belongs to the session D. General: Oral communications of the event 6th International Electronic Conference on Medicinal Chemistry
Published date
06 Nov, 2020
Citation
Camila Mara Clemente, Cesar Osvaldo Leonetti, Soledad Ravetti, Diego Ulises Ferreiro, R. Gonzalo Parra, María Inés Freiberger, FrustraPocket: A method to predict protein–ligand binding sites based on frustration, in Proceedings of 6th International Electronic Conference on Medicinal Chemistry, 1 November–30 November 2020, MDPI: Basel, Switzerland, doi: 10.3390/ECMC2020-07440
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FrustraPocket: A method to predict protein–ligand binding sites based on frustration

Cesar Osvaldo Leonetti 3
Diego Ulises Ferreiro 2,3
R. Gonzalo Parra 5
1. Instituto A.P. de Ciencias Básicas y Aplicadas, UNVM, Villa María, Córdoba, Argentina, Argentina
2. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Argentina.
3. Protein Physiology Lab, Departamento de Química Biológica, FCEN-UBA
4. CIT VM- Instituto A.P. de Ciencias Humanas. UNVM, Villa María, Argentina.
5. European Molecular Biology Laboratory, Heidelberg, Alemania.
Abstract

The identification of ligand binding sites in a protein is the key to several applications in the bioinformatics area, such as molecular docking, de novo drug design and structural identification of functional sites. In recent years it has been demonstrated that the concept of frustration is related to several functional aspects of proteins. For this reason, we present a new method that predicts protein-ligand interaction sites based on frustration.
A non-redundant data set of all monomeric enzymes with protein-ligand binding sites annotations were downloaded from the BioLiP database (n = 1007) to characterize protein-ligand interaction sites. Protein structures were downloaded from the Protein Data Bank (PDB) and frustration patterns were calculated using the Frustratometer tool. Characterization of the energetic patterns of all the selected proteins was performed. In addition, it was calculated the percentage of highly frustrated contacts and the solvent accessible surface (SASA) of the residues that are implicated in protein-ligand interaction.
We found that protein residues that directly interact with ligands are enriched in highly frustrated interactions. The method of FrustraPocket was used to predicted protein–ligand binding sites using frustration and SASA as parameters. In order to compare our method, the fpocket tool was used. It was found that Frustrapocket had a higher success rate than fpocket. FrustraPocket is still under development and it will be available soon for the scientific community.

Keywords
binding-site predictor
FrustraPocket
frustration
Oral Presentation
Poster
Clemente.pdf
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