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Updated: Jul 12, 2025

High-throughput Screening for Chemical Modulators of Post-transcriptionally Regulated Genes
Published on: March 3, 2015
A novel approach for predicting upstream regulators (PURE) that affect gene expression.
Tuan-Minh Nguyen1, Douglas B Craig1,2, Duc Tran3
1Department of Computer Science, Wayne State University, Detroit, 48202, USA.
Identifying the causes of disease-related gene expression changes is crucial. The Predicting Upstream REgulators (PURE) approach accurately identifies causal chemicals, drugs, or toxicants (CDTs) and potential drug repurposing candidates.
Area of Science:
- Genomics
- Toxicology
- Pharmacology
Background:
- External factors like chemical, drug, or toxicant (CDT) exposure can cause diseases.
- Identifying causal CDTs from gene expression changes is vital for research and drug discovery.
- Inferring CDTs that reverse disease-induced gene expression is key for drug repurposing.
Purpose of the Study:
- To introduce the Predicting Upstream REgulators (PURE) approach for identifying causal CDTs.
- To evaluate PURE's ability to infer CDTs from gene expression data.
- To assess PURE's utility in identifying drugs for reversing disease phenotypes.
Main Methods:
- PURE was developed to infer causal CDTs from gene expression profiles.
- The approach was compared against four classical methods and Ingenuity Pathway Analysis (IPA).
- Performance was evaluated on 16 datasets (rat, mouse, human) involving 8 chemicals/drugs, assessing CDT identification rank and false positives.
Main Results:
- PURE outperformed existing methods in 11 out of 16 experiments.
- PURE correctly identified the causal CDT at the top rank 7 times.
- IPA was second-best but failed to identify the correct CDT in 5 experiments.
Conclusions:
- PURE effectively infers true CDTs responsible for observed gene expression changes.
- The PURE approach demonstrates superior performance compared to popular methods.
- PURE shows significant potential for applications in drug repurposing and understanding disease etiology.
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