4.7 Article

A Dynamic G-Quadruplex Region Regulates the HIV-1 Long Terminal Repeat Promoter

期刊

JOURNAL OF MEDICINAL CHEMISTRY
卷 56, 期 16, 页码 6521-6530

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jm400914r

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资金

  1. Bill and Melinda Gates Foundation through the Grand Challenges Explorations Initiative (GCE) [OPP1035881]
  2. Italian Ministry of University and Research [FIRB-Ideas RBID082ATK_001]
  3. University of Padua
  4. National Institutes of Health [AI57083]

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G-Quadruplexes, noncanonical nucleic acid structures, act as silencers in the promoter regions of human genes; putative G-quadruplex forming sequences are also present in promoters of other mammals, yeasts, and prokaryotes. Here we show that also the HIV-1 LTR promoter exploits G-quadruplex-mediated transcriptional regulation with striking similarities to eukaryotic promoters and that treatment with a G-quadruplex ligand inhibits HIV-1 infectivity. Computational analysis on 953 HIV-1 strains substantiated a highly conserved G-rich sequence corresponding to Sp1 and NF-kappa B binding sites. Biophysical/biochemical analysis proved that two mutually exclusive parallel-like intramolecular G-quadruplexes, stabilized by small molecule ligands, primarily fold in this region. Mutations disrupting G-quadruplex formation enhanced HIV promoter activity in cells, whereas treatment with a G-quadruplex ligand impaired promoter activity and displayed antiviral effects. These findings disclose the possibility of inhibiting the HIV-1 LTR promoter by G-quadruplex-interacting small molecules, providing a new pathway to development of anti-HIV-1 drugs with unprecedented mechanism of action.

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