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Torcetrapib

Genome-wide protein-ligand network analysis maps the off-target pathways behind the hypertensive side effect of torcetrapib (PLoS Comput Biol 2009)

Original title: Drug discovery using chemical systems biology: identification of the protein-ligand binding network to explain the side effects of CETP inhibitors

PLoS Comput Biol · · 6

Xie L, Li J, Xie L, Bourne PE

Researchers introduced a computational chemical systems biology strategy to identify genome-wide protein-ligand binding profiles and applied it to explain the adverse hypertensive effects that led to withdrawal of the CETP inhibitor torcetrapib from phase III trials. The method identified a panel of off-target proteins for torcetrapib and other CETP inhibitors from the human structural genome and mapped these targets onto biological pathways using the literature. The resulting protein-ligand network was consistent with experimental data from multiple sources and showed that the side effects of CETP inhibitors are modulated through combinatorial control of multiple interconnected pathways rather than a single off-target interaction. The authors conclude that adverse drug effects of CETP inhibitors might be minimized by fine-tuning multiple off-target interactions, illustrating a broader role for systems biology in drug discovery.

Read the paper (DOI)PubMed

Original abstract

Systematic identification of protein-drug interaction networks is crucial to correlate complex modes of drug action to clinical indications. We introduce a novel computational strategy to identify protein-ligand binding profiles on a genome-wide scale and apply it to elucidating the molecular mechanisms associated with the adverse drug effects of Cholesteryl Ester Transfer Protein (CETP) inhibitors. CETP inhibitors are a new class of preventive therapies for the treatment of cardiovascular disease. However, clinical studies indicated that one CETP inhibitor, Torcetrapib, has deadly off-target effects as a result of hypertension, and hence it has been withdrawn from phase III clinical trials. We have identified a panel of off-targets for Torcetrapib and other CETP inhibitors from the human structural genome and map those targets to biological pathways via the literature. The predicted protein-ligand network is consistent with experimental results from multiple sources and reveals that the side-effect of CETP inhibitors is modulated through the combinatorial control of multiple interconnected pathways. Given that combinatorial control is a common phenomenon observed in many biological processes, our findings suggest that adverse drug effects might be minimized by fine-tuning multiple off-target interactions using single or multiple therapies. This work extends the scope of chemogenomics approaches and exemplifies the role that systems biology has in the future of drug discovery.

mechanismstorcetrapib

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.