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Selective Targeting of Cancer-Related G-Quadruplex Structures by the Natural Compound Dicentrine

Authors :
Chiara Platella
Francesca Ghirga
Domenica Musumeci
Deborah Quaglio
Pasquale Zizza
Sara Iachettini
Carmen D’Angelo
Annamaria Biroccio
Bruno Botta
Mattia Mori
Daniela Montesarchio
Platella, Chiara
Ghirga, Francesca
Musumeci, Domenica
Quaglio, Deborah
Zizza, Pasquale
Iachettini, Sara
D’Angelo, Carmen
Biroccio, Annamaria
Botta, Bruno
Mori, Mattia
Montesarchio, Daniela
Source :
International Journal of Molecular Sciences, Volume 24, Issue 4, Pages: 4070
Publication Year :
2023
Publisher :
MDPI AG, 2023.

Abstract

Aiming to identify highly effective and selective G-quadruplex ligands as anticancer candidates, five natural compounds were investigated here, i.e., the alkaloids Canadine, D-Glaucine and Dicentrine, as well as the flavonoids Deguelin and Millettone, selected as analogs of compounds previously identified as promising G-quadruplex-targeting ligands. A preliminary screening with the G-quadruplex on the Controlled Pore Glass assay proved that, among the investigated compounds, Dicentrine is the most effective ligand of telomeric and oncogenic G-quadruplexes, also showing good G-quadruplex vs. duplex selectivity. In-depth studies in solution demonstrated the ability of Dicentrine to thermally stabilize telomeric and oncogenic G-quadruplexes without affecting the control duplex. Interestingly, it showed higher affinity for the investigated G-quadruplex structures over the control duplex (Kb~106 vs. 105 M−1), with some preference for the telomeric over the oncogenic G-quadruplex model. Molecular dynamics simulations indicated that Dicentrine preferentially binds the G-quadruplex groove or the outer G-tetrad for the telomeric and oncogenic G-quadruplexes, respectively. Finally, biological assays proved that Dicentrine is highly effective in promoting potent and selective anticancer activity by inducing cell cycle arrest through apoptosis, preferentially targeting G-quadruplex structures localized at telomeres. Taken together, these data validate Dicentrine as a putative anticancer candidate drug selectively targeting cancer-related G-quadruplex structures.

Details

ISSN :
14220067
Volume :
24
Database :
OpenAIRE
Journal :
International Journal of Molecular Sciences
Accession number :
edsair.doi.dedup.....cc48e2b9ccd8e5d545f6b71c60193ec2
Full Text :
https://doi.org/10.3390/ijms24044070