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Trilobatin as an HIV ‐1 entry inhibitor targeting the HIV ‐1 Gp41 envelope

作者:Shuwen Yin, Xuanxuan Zhang, Fangyuan Lai, Taizhen Liang, Jiayong Wen, Wanying Lin, Jiayin Qiu, Shuwen Liu, Li Lin · 发表于:FEBS Letters · 年份:2018 · DOI:10.1002/1873-3468.13113 · 被引用次数:30 · 研究领域:HIV Research and Treatment、HIV/AIDS drug development and treatment、HIV/AIDS Research and Interventions

HIV-1 transmembrane protein gp41 plays a crucial role by forming a stable six-helix bundle during HIV entry. Due to highly conserved sequence of gp41, the development of an effective and safe small-molecule compound targeting gp41 is a good choice. Currently, natural polyanionic ingredients with anti-HIV activities have aroused concern. Here, we first discovered that a glycosylated dihydrochalcone, trilobatin, exhibited broad anti-HIV-1 activity and low cytotoxicity in vitro. Site-directed mutagenesis analysis suggested that the hydrophobic residue (I564) located in gp41 pocket-forming site is pivotal for anti-HIV activity of trilobatin. Furthermore, trilobatin displayed synergistic anti-HIV activities combined with other antiretroviral agents. Trilobatin has a good potential to be developed as a small-molecule HIV-1 entry inhibitor for clinical combination therapy.