Galatola Ramona, Vasconcelos Aimee, Pérez Yolanda, Cruz Antonio, Pujol Montserrat, Alsina María A, Gómara María J, Haro Isabel
Unit of Synthesis and Biomedical Applications of Peptides, Department of Biomedical Chemistry, IQAC-CSIC, Jordi Girona 18-26, 08034 Barcelona, Spain.
NMR Unit, IQAC-CSIC, Jordi Girona 18-26, 08034 Barcelona, Spain.
Eur J Med Chem. 2014 Oct 30;86:589-604. doi: 10.1016/j.ejmech.2014.09.020. Epub 2014 Sep 8.
The development of peptide fusion inhibitors based on short synthetic peptides represents a promising option in the fight against HIV-1 infection, especially in individuals infected with multiresistant HIV-1 strains. GBV-C has the beneficial effect of retarding the progression of AIDS in people who are co-infected with both the GBV-C and HIV viruses. In previous works, the E1(22-39) GBV-C sequence (E1P8lin) was found to be capable of inhibiting the interaction of HIV-1 FP with bilayers and its cyclic analogue (E1P8cyc) showed a higher anti-HIV-1 activity. In the present work, in an attempt to gain a better understanding of the interaction of E1P8 peptides with HIV-1 FP, we analyzed direct interactions between peptides at the molecular level. Our results support that E1P8cyc might be more potent at blocking HIV-1 entry than E1P8lin as a consequence of the structure induced in the complex formed with HIV-1 FP, which is able to modify the conformation adopted by this functional domain of the HIV-1 gp41 protein in target cell membranes.
基于短合成肽的肽融合抑制剂的开发是对抗HIV-1感染的一个有前景的选择,特别是对于感染多重耐药HIV-1毒株的个体。GBV-C对同时感染GBV-C和HIV病毒的人具有延缓艾滋病进展的有益作用。在先前的研究中,发现GBV-C的E1(22-39)序列(E1P8lin)能够抑制HIV-1融合肽与双层膜的相互作用,其环状类似物(E1P8cyc)表现出更高的抗HIV-1活性。在本研究中,为了更好地理解E1P8肽与HIV-1融合肽的相互作用,我们在分子水平上分析了肽之间的直接相互作用。我们的结果支持,由于与HIV-1融合肽形成的复合物中诱导的结构,E1P8cyc在阻断HIV-1进入方面可能比E1P8lin更有效,这种结构能够改变HIV-1 gp41蛋白在靶细胞膜中的这个功能域所采用的构象。