Anderson M J, Porter D C, Fultz P N, Morrow C D
Department of Microbiology, University of Alabama at Birmingham 35294, USA.
Virology. 1996 May 1;219(1):140-9. doi: 10.1006/viro.1996.0231.
Poliovirus genomes encoding the complete gag or env surface gene of the simian immunodeficiency virus SIV(smm) PBj14 (SIV-PBj14) were constructed. The in vitro-transcribed RNA from these genomes, referred to as replicons, have the capacity for self-replication when transfected into tissue culture cells. Serial passage of the replicons containing the SIV-PBj14 gag or SIV-PBj14 env (SU) genes with a recombinant vaccinia virus, VV-P1, which provides P1 in trans, resulted in the encapsidation of these replicons. Infection of cells with the encapsidated replicons that encode gag, referred to as vIC-SIV-PBj14 Gag, resulted in the production of a 55-kDa protein that was released from the infected cells. Using a sucrose density-gradient analysis, the protein was found to sediment at a density consistent with that of a virus-like particle. Infection of cells with a replicon that encodes the env SU gene, referred to as vIC-SIV-PBj14 SU, resulted in the production of two SIV-PBj14 envelope-related intracellular proteins. One of these proteins had a molecular mass consistent with that of the unglycosylated SIV-PBj14 SU protein (63 kDa); the second protein had a higher molecular mass (>160 kDa). Characterization of this larger protein revealed that it was glycosylated and possibly represented a dimer of the SU protein. A pulse-chase analysis of cells infected with vIC-SIV-PBj14 SU demonstrated that a 110- to 130-kDa protein was released, which is consistent with the molecular mass of the SIV-PBj14 SU protein. The results of these studies demonstrate that poliovirus replicons can be used to express foreign proteins, including glycoproteins, which retain many of the physical features of the native protein.
构建了编码猿猴免疫缺陷病毒SIV(smm)PBj14(SIV-PBj14)完整gag或env表面基因的脊髓灰质炎病毒基因组。这些基因组体外转录的RNA,即复制子,转染到组织培养细胞中时具有自我复制能力。含有SIV-PBj14 gag或SIV-PBj14 env(SU)基因的复制子与能反式提供P1的重组痘苗病毒VV-P1进行连续传代,导致这些复制子被包装。用编码gag的包装复制子感染细胞,即vIC-SIV-PBj14 Gag,产生了一种55 kDa的蛋白质,该蛋白质从感染细胞中释放出来。通过蔗糖密度梯度分析,发现该蛋白质的沉降密度与病毒样颗粒一致。用编码env SU基因的复制子感染细胞,即vIC-SIV-PBj14 SU,产生了两种与SIV-PBj14包膜相关的细胞内蛋白质。其中一种蛋白质的分子量与未糖基化的SIV-PBj14 SU蛋白质(63 kDa)一致;第二种蛋白质分子量更高(>160 kDa)。对这种较大蛋白质的表征表明它是糖基化的,可能代表SU蛋白质的二聚体。对感染vIC-SIV-PBj14 SU的细胞进行脉冲追踪分析表明,释放出一种110至130 kDa的蛋白质,这与SIV-PBj14 SU蛋白质的分子量一致。这些研究结果表明,脊髓灰质炎病毒复制子可用于表达外源蛋白质,包括糖蛋白,这些糖蛋白保留了许多天然蛋白质的物理特性。