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  3. Polypharmacology Browser PPB3: A Web-Based Deep Learning Tool for Target Prediction Using ChEMBL Data.
 

Polypharmacology Browser PPB3: A Web-Based Deep Learning Tool for Target Prediction Using ChEMBL Data.

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BORIS DOI
10.48620/94837
Publisher DOI
10.1021/acs.jcim.6c00299
PubMed ID
41721463
Description
Drug-like molecules often interact with multiple biological targets. Assessing this polypharmacology is essential for drug development. Here, we trained deep neural networks to associate bioactive molecules up to 80 non-hydrogen atoms reported in ChEMBL 34, represented as binary substructure fingerprints, with lists of targets on which the molecules are ≥50% active at ≤10 μM. We included 2,496,555 interactions between 1,187,089 molecules and 7546 targets having at least five reported active molecules, including single proteins, protein complexes, protein families, cell lines, organisms, and further target types. This represents a much larger data set than in previously reported models, which were mostly limited to protein targets. Our models achieve good performances in terms of recall and precision per molecule and per target, as illustrated by overall statistics and by a case study in comparison with other online prediction tools. PPB3 predictions can be performed online at https://ppb3.gdb.tools/.
Date of Publication
2026-03-09
Publication Type
Article
Subject(s)
500 Science > 540 Chemistry
Language(s)
en
Contributor(s)
Darsaraee, Maedeh
DCBP Gruppe Prof. Reymond
Javor, Sacha
DCBP Gruppe Prof. Reymond
Reymond, Jean-Louisorcid-logo
DCBP Gruppe Prof. Reymond
Additional Credits
DCBP Gruppe Prof. Reymond
Series
Journal of Chemical Information and Modeling
Publisher
American Chemical Society
ISSN
1549-960X
1549-9596
Access(Rights)
restricted
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