We have previously reported that stabilization of the G-quadruplex structures in the HIV-1 Long Terminal Repeat (LTR) promoter suppresses viral transcription. Here we sought to develop new G-quadruplex ligands to be exploited as antiviral compounds by enhancing binding towards the viral G-quadruplex structures. We synthesized naphthalene diimide derivatives with a lateral expansion of the aromatic core. The new compounds were able to bind/stabilize the G-quadruplex to a high extent and some of them displayed clear-cut selectivity towards the viral G-quadruplexes with respect to the human telomeric G-quadruplexes. This feature translated into low nanomolar anti-HIV-1 activity towards two viral strains and encouraging selectivity indexes. The selectivity depended on specific recognition of LTR loop residues; the mechanism of action was ascribed to inhibition of LTR promoter activity in cells. This is the first example of G-quadruplex ligands that show increased selectivity towards the viral G-quadruplexes and display remarkable antiviral activity.

Synthesis, Binding and Antiviral Properties of Potent Core-extended Naphthalene Diimides Targeting the HIV-1 Long Terminal Repeat Promoter G-quadruplexes

DORIA, FILIPPO;GRANDE, VINCENZO;FRECCERO, MAURO;
2015-01-01

Abstract

We have previously reported that stabilization of the G-quadruplex structures in the HIV-1 Long Terminal Repeat (LTR) promoter suppresses viral transcription. Here we sought to develop new G-quadruplex ligands to be exploited as antiviral compounds by enhancing binding towards the viral G-quadruplex structures. We synthesized naphthalene diimide derivatives with a lateral expansion of the aromatic core. The new compounds were able to bind/stabilize the G-quadruplex to a high extent and some of them displayed clear-cut selectivity towards the viral G-quadruplexes with respect to the human telomeric G-quadruplexes. This feature translated into low nanomolar anti-HIV-1 activity towards two viral strains and encouraging selectivity indexes. The selectivity depended on specific recognition of LTR loop residues; the mechanism of action was ascribed to inhibition of LTR promoter activity in cells. This is the first example of G-quadruplex ligands that show increased selectivity towards the viral G-quadruplexes and display remarkable antiviral activity.
2015
Chemistry & Analysis covers research on natural and laboratory syntheses, chemical structure, structure-function relationship, isolation and analyses of biologically significant molecules, medicinal and food chemistry. Technical material describing crucial chemical methods in biochemical analysis and research is also placed in this category. Resources covering general biochemistry and natural metabolic pathways are excluded.
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Esperti anonimi
Inglese
Internazionale
ELETTRONICO
11
info:eu-repo/semantics/article
262
Perrone, Rosalba; Doria, Filippo; Butovskaya, Elena; Frasson, Ilaria; Botti, Silvia; Scalabrin, Matteo; Lago, Sara; Grande, Vincenzo; Nadai, Matteo; F...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1106156
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