Shi Weiguo, Qi Zhi, Pan Chungen, Xue Na, Debnath Asim K, Qie Jiankun, Jiang Shibo, Liu Keliang
Beijing Institute of Pharmacology & Toxicology, Pharmaceutical Chemistry, 27 Taiping Road, Beijing 100850, China.
Biochem Biophys Res Commun. 2008 Oct 3;374(4):767-72. doi: 10.1016/j.bbrc.2008.07.134. Epub 2008 Aug 3.
The peptidic anti-HIV drug T20 (Fuzeon) and its analog C34 share a common heptad repeat (HR) sequence, but they have different functional domains, i.e., pocket- and lipid-binding domains (PBD and LBD, respectively). We hypothesize that novel anti-HIV peptides may be designed by using artificial sequences containing multiple copies of HR motifs plus zero, one or two functional domains. Surprisingly, we found that the peptides containing only the non-natural HR sequences could significantly inhibit HIV-1 infection, while addition of PBD and/or LBD to the peptides resulted in significant improvement of anti-HIV-1 activity. These results suggest that these artificial HR sequences, which may serve as structural domains, could be used as templates for the design of novel antiviral peptides against HIV and other viruses with class I fusion proteins.
肽类抗HIV药物T20(福泽昂)及其类似物C34具有共同的七肽重复(HR)序列,但它们具有不同的功能域,即口袋结合域和脂质结合域(分别为PBD和LBD)。我们推测,可以通过使用包含多个HR基序拷贝以及零个、一个或两个功能域的人工序列来设计新型抗HIV肽。令人惊讶的是,我们发现仅包含非天然HR序列的肽可以显著抑制HIV-1感染,而在肽中添加PBD和/或LBD会导致抗HIV-1活性显著提高。这些结果表明,这些可能用作结构域的人工HR序列可以用作设计针对HIV和其他具有I类融合蛋白的病毒的新型抗病毒肽的模板。