Kakker N K, Mikhailov M V, Nermut M V, Burny A, Roy P
Department of Biochemistry, University of Oxford, South Parks Road, Oxford, OX1 3QU, United Kingdom.
Virology. 1999 Dec 20;265(2):308-18. doi: 10.1006/viro.1999.0007.
A key stage in the life cycle of C-type retroviruses is the assembly of Gag precursor protein at the plasma membrane of infected cells. Here we report the assembly of bovine leukemia virus (BLV) gag gene product into virus-like particles (VLPs) using the baculovirus expression system. Expression of BLV Pr44(Gag) resulted in the assembly and release of VLPs, thereby confirming the ability of retroviral Gag polyprotein to assemble and bud from insect cells. Efficient particle formation required a myristoylation signal at the N-terminus of BLV Pr44(Gag). Recombinant baculoviruses expressing matrix (MA) or capsid-nucleocapsid (CA-NC) proteins of BLV were generated but neither of these domains was capable of assembling into particulate structures. To assess the compatibility of Gag domains between leukemia and lentivirus groups three different recombinant chimeras each expressing MA of one virus (e.g., simian immunodeficiency or BLV) and CA-NC of another (e.g., BLV or human T-cell leukemia virus type-I) were constructed. Each of the chimeric proteins assembled efficiently and budded as VLPs, suggesting that the MA and CA domains of these two evolutionary divergent retrovirus groups can be functionally exchanged without perturbation of Gag VLP formation. The lenti-leukemia chimeric Gag approach has potential for studying protein-protein interactions in other retroviruses.
C型逆转录病毒生命周期中的一个关键阶段是Gag前体蛋白在受感染细胞的质膜上组装。在此,我们报道了利用杆状病毒表达系统将牛白血病病毒(BLV)gag基因产物组装成病毒样颗粒(VLP)。BLV Pr44(Gag)的表达导致VLP的组装和释放,从而证实了逆转录病毒Gag多聚蛋白能够从昆虫细胞中组装并出芽。高效的颗粒形成需要在BLV Pr44(Gag)的N端有一个肉豆蔻酰化信号。构建了表达BLV基质(MA)或衣壳-核衣壳(CA-NC)蛋白的重组杆状病毒,但这些结构域均不能组装成颗粒结构。为了评估白血病病毒和慢病毒组之间Gag结构域的兼容性,构建了三种不同的重组嵌合体,每种嵌合体分别表达一种病毒(如猿猴免疫缺陷病毒或BLV)的MA和另一种病毒(如BLV或I型人类T细胞白血病病毒)的CA-NC。每种嵌合蛋白都能高效组装并以VLP的形式出芽,这表明这两个进化上不同的逆转录病毒组的MA和CA结构域可以在功能上相互交换,而不会干扰Gag VLP的形成。慢病毒-白血病嵌合Gag方法在研究其他逆转录病毒中的蛋白质-蛋白质相互作用方面具有潜力。