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DIGEP-Pred 2.0: A web application for predicting drug-induced cell signaling and gene expression changes
Sergey M Ivanov1,2, Anastasia V Rudik1, Alexey A Lagunin1,2
1Department of Bioinformatics, Institute of Biomedical Chemistry, Pogodinskaya Street, 10 bldg. 8, Moscow, 119121, Russia.
DIGEP-Pred 2.0 predicts drug-induced gene expression profiles and targets from chemical structures. This tool aids in understanding drug effects and mechanisms when experimental data is lacking.
Area of Science:
- Computational chemistry
- Pharmacogenomics
- Bioinformatics
Background:
- Drug-induced gene expression profiles (DIGEP) are crucial for assessing drug efficacy, toxicity, and mechanisms.
- Experimental DIGEP data is often unavailable for many compounds, hindering drug discovery and development.
- Predictive models are needed to bridge this data gap.
Purpose of the Study:
- To develop and present DIGEP-Pred 2.0, a web application for predicting DIGEP and drug targets using only a compound's structural formula.
- To integrate structure-activity relationships (SARs) and network analysis for accurate predictions.
- To provide insights into potential therapeutic and adverse effects of drug-like compounds.
Main Methods:
- Utilized PASS technology for SAR model creation with data from CTD, CMap, PubChem, and ChEMBL.
- Employed network analysis to identify potential drug targets and master regulators.
- Developed DIGEP prediction models for various cell lines (MCF7, PC3, HL60) using CMap data.
- Integrated pathway, Gene Ontology, and disease enrichment analyses.
Main Results:
- Achieved high prediction accuracy: 86.5% for genes, 94.8% for proteins (CTD data), and 97.9% for MoAs.
- Developed SAR models with 87.5% mean accuracy for CMap data across different fold-change thresholds.
- DIGEP-Pred 2.0 provides predicted gene expression changes, drug targets, and enriched biological information.
- The web application is freely accessible at https://www.way2drug.com/digep-pred.
Conclusions:
- DIGEP-Pred 2.0 effectively predicts drug-induced gene expression profiles and potential drug targets from chemical structures.
- The tool facilitates the exploration of drug mechanisms and effects, especially in the absence of experimental data.
- DIGEP-Pred 2.0 serves as a valuable resource for drug discovery and toxicological assessments.
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