Resum
Two G-quadruplex forming oligonucleotides [d(TG4T)4 and d(TG6T)4] were selected as two tetramolecular quadruplex nanostructures because of their demonstrated ability to be modified with hydrophobic molecules. This allowed us to synthesize two series of G-quadruplex conjugates that differed in the number of G-tetrads, as well as in the terminal position of the lipid modification. Both solution and solid-phase syntheses were carried out to yield the corresponding lipid oligonucleotide conjugates modified at their 3′-and 5′-termini, respectively. Biophysical studies confirmed that the presence of saturated alkyl chains with different lengths did not affect the G-quadruplex integrity, but increased the stability. Next, the G-quadruplex domain was added to an 18-mer antisense oligonucleotide. Gene silencing studies confirmed the ability of such G-rich oligonucleotides to facilitate the inhibition of target Renilla luciferase without showing signs of toxicity in tumor cell lines.
| Idioma original | Anglès |
|---|---|
| Número d’article | 121 |
| Pàgines (de-a) | 1-24 |
| Nombre de pàgines | 24 |
| Revista | International Journal of Molecular Sciences |
| Volum | 22 |
| Número | 1 |
| DOIs | |
| Estat de la publicació | Publicada - 1 de gen. 2021 |
| Publicat externament | Sí |