Abstract

Noncanonical secondary structures formed by Guanine-rich DNA sequences fold into four-stranded structures called the G-quadruplexes (G4s). Targeting G-quadruplexes is considered an attractive approach toward drug intervention. Here, we have studied the targeting of G4s of stem cell markers with designed short peptide (named as QW10) using biophysical and biochemical techniques. Our CD studies showed that G4 sequences of stem cell markers formed mixed G-quadruplexes in 100 mM Na+, 100 mM K+ and 100 mM K+  +40 wt% PEG 200. On titrating these structures with an increasing concentration of QW10 peptide, we observed a significant decrease in CD intensity followed by the complete disappearance of G4 CD signatures confirming their destabilization not only in dilute conditions but also under cell-mimicking molecular crowding conditions. Our electrophoretic mobility shift assay and significant decrease in the Tm values confirmed the significant destabilization of G4 structures Fluorescence results showed the formation of high-affinity G4 complex-peptide complex with binding affinities in the micromolar (µM) range of 2–8 µM in different ionic conditions. First time, this study may give insight into the use of peptides as leads for the development of more potent and selective ligands to regulate the potential therapeutic applications of cancer stem cell markers.

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