Conjugation of a Nonspecific Antiviral Sapogenin with a Specific HIV Fusion Inhibitor: A Promising Strategy for Discovering New Antiviral Therapeutics

Triterpene saponins are a major group of active components in natural products with nonspecific antiviral activities, while T20 peptide (enfuvirtide), which contains a helix zone-binding domain (HBD), is a gp41-specific HIV-1 fusion inhibitor. In this paper, we report the design, synthesis, and stru...

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Veröffentlicht in:Journal of medicinal chemistry 2014-09, Vol.57 (17), p.7342-7354
Hauptverfasser: Wang, Chao, Lu, Lu, Na, Heya, Li, Xiangpeng, Wang, Qian, Jiang, Xifeng, Xu, Xiaoyu, Yu, Fei, Zhang, Tianhong, Li, Jinglai, Zhang, Zhenqing, Zheng, Baohua, Liang, Guodong, Cai, Lifeng, Jiang, Shibo, Liu, Keliang
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Sprache:eng
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Zusammenfassung:Triterpene saponins are a major group of active components in natural products with nonspecific antiviral activities, while T20 peptide (enfuvirtide), which contains a helix zone-binding domain (HBD), is a gp41-specific HIV-1 fusion inhibitor. In this paper, we report the design, synthesis, and structure–activity relationship (SAR) of a group of hybrid molecules in which bioactive triterpene sapogenins were covalently attached to the HBD-containing peptides via click chemistry. We found that either the triterpenes or peptide part alone showed weak activity against HIV-1 Env-mediated cell–cell fusion, while the hybrids generated a strong cooperative effect. Among them, P26–BApc exhibited anti-HIV-1 activity against both T20-sensitive and -resistant HIV-1 strains and improved pharmacokinetic properties. These results suggest that this scaffold design is a promising strategy for developing new HIV-1 fusion inhibitors and possibly novel antiviral therapeutics against other viruses with class I fusion proteins.
ISSN:0022-2623
1520-4804
DOI:10.1021/jm500763m