Publication | Closed Access
Exploring the Chemical Space of G-Quadruplex Binders: Discovery of a Novel Chemotype Targeting the Human Telomeric Sequence
50
Citations
35
References
2013
Year
Human Telomeric SequenceMolecular BiologyClick ChemistryChemical BiologyTumor BiologyNovel ChemotypeChemical SpaceDna G-rich SequencesCancer ResearchTelomeric LevelBiochemistryOncogenic AgentG Protein-coupled ReceptorUnprecedented Binding SelectivityCell BiologyTumor MicroenvironmentBio-orthogonal ChemistryMolecular DockingNatural SciencesCancer GenomicsMedicineDrug Discovery
Recent findings have unambiguously demonstrated that DNA G-rich sequences can adopt a G-quadruplex folding in living cells, thus further validating them as crucial targets for anticancer therapy. Herein, to identify new potent G4 binders as antitumor drug candidates, we have targeted a 24-nt G4-forming telomeric sequence employing a receptor-based virtual screening approach. Among the best candidates, in vitro binding experiments allowed identification of three novel G4 ligands. Among them, the best compound features an unprecedented binding selectivity for the human telomeric DNA G-quadruplex with no detectable binding for other G4-forming sequences present at different genomic sites. This behavior correlates with the detected ability to generate DNA damage response in tumor cells at the telomeric level and efficient antiproliferative effect on different tumor cell lines at low micromolar concentrations.
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