Skip to content
Open access

The red box: a selective G-quadruplex binder that downregulates c-MYC expression in human cells

Aug 2026 · RSC Chemical Biology · 0 citations · 53 references
Medicine

Abstract

G-quadruplex (G4) structures within oncogene promoters represent promising therapeutic targets, particularly in the context of transcriptional regulation. Here, we report that the red box, a fully organic macrocyclic cationic receptor, exhibits high affinity and selectivity for G4 structures. Biophysical analyses reveal that the red box binds the c-MYC G4 with nanomolar affinity. Notably, the red box displays greater selectivity for c-MYC over duplex DNA compared to the well-characterized porphyrin TMPyP4, and its macrocyclic architecture is essential for this activity, as its acyclic analogue displays negligible G4 stabilization. In cellular assays, treatment with non-cytotoxic concentrations of the red box selectively downregulated c-MYC expression in HEK293T cells, with minimal effects on c-KIT and hTERT. Unlike previously reported G4-selective ligands based on Pd(ii)/Pt(ii) metallacycles, the red box achieves nanomolar affinity and selectivity through a fully metal-free, hydrazone-based scaffold, addressing key limitations related to cost, biodegradability, and long-term biocompatibility. Furthermore, c-MYC downregulation was consistently observed across multiple cell lines, including tumour-derived cellular models, underscoring the translational relevance of this new class of organic G4 binders.

Read PDF

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.