Luo Lizhong, Li Yan, Ha Soon Duck, Kang C Yong
Siebens-Drake Research Institute, The University of Western Ontario, London, ON, Canada N6G 2V4.
Virus Genes. 2007 Oct;35(2):187-93. doi: 10.1007/s11262-007-0108-x. Epub 2007 May 18.
Virus-like particles (VLPs) of numerous viruses have been considered as possible candidates for vaccine development. We have constructed HIV chimeric genes by coupling the gag gene of HIV-2 with the V3 domain of the gp120 gene of either HIV-1 or HIV-2 and expressed the chimeric genes in SF21 cells using the recombinant baculovirus expression system. Although the level of expression of the chimeric HIV-2 gag gene with the V3 domain of either HIV-1 gp120 (gagC-1V3) or HIV-2 gp120 (gagC-2V3) was high, the VLP assembly and extracellular release of GagC-1V3 was very poor. In contrast, GagC-2V3 chimeric proteins formed VLPs and released efficiently. We have constructed substitution mutants to investigate the effects of the hydrophobic region of the V3 domain of HIV-1 Gp120 (1V3) in VLP assembly and release. The substitution mutant analyses revealed that in replacing the hydrophobic region of the 1V3 in GagC-1V3 with the hydrophilic sequence of the V3 domain of HIV-2 Gp120 (2V3) enhanced the extracellular VLP. We demonstrate here that disruption of the hydrophobic character of the C-terminus of the chimeric protein improves assembly and release of the VLPs. Our results suggest that the poor GagC-1V3 VLP release was attributed to the hydrophobic region in the V3 sequence of the chimeric protein, and that not only the N-terminal myristylation and positively charged domain of the Gag protein functioned as a targeting signal to direct membrane binding, but also that the C-terminal hydrophobic region affected release of chimeric VLPs.
许多病毒的病毒样颗粒(VLPs)被视为疫苗开发的潜在候选物。我们通过将HIV-2的gag基因与HIV-1或HIV-2的gp120基因的V3结构域连接,构建了HIV嵌合基因,并使用重组杆状病毒表达系统在SF21细胞中表达这些嵌合基因。尽管带有HIV-1 gp120(gagC-1V3)或HIV-2 gp120(gagC-2V3)V3结构域的嵌合HIV-2 gag基因的表达水平很高,但GagC-1V3的VLP组装和细胞外释放却非常差。相比之下,GagC-2V3嵌合蛋白形成了VLPs并有效释放。我们构建了替代突变体,以研究HIV-1 Gp120(1V3)的V3结构域的疏水区域在VLP组装和释放中的作用。替代突变体分析表明,用HIV-2 Gp120(2V3)的V3结构域的亲水序列替换GagC-1V3中1V3的疏水区域可增强细胞外VLP。我们在此证明,嵌合蛋白C末端疏水特性的破坏可改善VLPs的组装和释放。我们的结果表明,GagC-1V3 VLP释放不佳归因于嵌合蛋白V3序列中的疏水区域,并且不仅Gag蛋白的N末端肉豆蔻酰化和带正电荷的结构域作为靶向信号指导膜结合,而且C末端疏水区域也影响嵌合VLPs的释放。