Henderson L E, Benveniste R E, Sowder R, Copeland T D, Schultz A M, Oroszlan S
Laboratory of Molecular Virology and Carcinogenesis, Bionetics Research, Inc., NCI-Frederick Cancer Research Facility, Maryland 21701.
J Virol. 1988 Aug;62(8):2587-95. doi: 10.1128/JVI.62.8.2587-2595.1988.
A simian immunodeficiency virus (SIV) designated SIVMne was isolated from a pig-tailed macaque with lymphoma housed at the University of Washington Regional Primate Research Center, Seattle. To better establish the relationship of SIVMne to other immunodeficiency viruses, we purified and determined the partial amino acid sequences of six structural proteins (p1, p2, p6, p8, p16, and p28) from SIVMne and compared these amino acid sequences to the translated nucleotide sequences of SIVMac and human immunodeficiency virus types 1 and 2 (HIV-1 and HIV-2). A total of 125 residues of SIVMne amino acid sequence were compared to the predicted amino acid sequences of the gag precursors of SIV and HIVs. In the compared regions 92% of the SIVMne amino acids were identical to predicted residues of SIVMac, 83% were identical to predicted residues of HIV-2, and 41% were identical to predicted residues of HIV-1. These data reveal that the six SIVMne proteins are proteolytic cleavage products of the gag precursor (Pr60gag) and that their order in the structure of Pr60gag is p16-p28-p2-p8-p1-p6. Rabbit antisera prepared against purified p28 and p16 were shown to cross-react with proteins of 60, 54, and 47 kilodaltons present in the viral preparation and believed to be SIVMne Pr60gag and intermediate cleavage products, respectively. SIVMne p16 was shown to contain covalently bound myristic acid, and p8 was identified as a nucleic acid-binding protein. The high degree of amino acid sequence homology between SIVs and HIV-2 around proven proteolytic cleavage sites in SIV Pr60gag suggests that proteolytic processing of the HIV-2 gag precursor is probably very similar to processing of the SIV gag precursor. Peptide bonds cleaved during proteolytic processing of the SIV gag precursor were similar to bonds cleaved during processing of HIV-1 gag precursors, suggesting that the SIV and HIV viral proteases have similar cleavage site specificities.
一种名为SIVMne的猿猴免疫缺陷病毒是从西雅图华盛顿大学地区灵长类动物研究中心饲养的一只患淋巴瘤的猪尾猕猴体内分离出来的。为了更好地确定SIVMne与其他免疫缺陷病毒的关系,我们对SIVMne的六种结构蛋白(p1、p2、p6、p8、p16和p28)进行了纯化并测定了其部分氨基酸序列,并将这些氨基酸序列与SIVMac以及1型和2型人类免疫缺陷病毒(HIV-1和HIV-2)的翻译核苷酸序列进行了比较。总共将125个SIVMne氨基酸序列残基与SIV和HIV的gag前体的预测氨基酸序列进行了比较。在比较区域中,92%的SIVMne氨基酸与SIVMac的预测残基相同,83%与HIV-2的预测残基相同,41%与HIV-1的预测残基相同。这些数据表明,六种SIVMne蛋白是gag前体(Pr60gag)的蛋白水解裂解产物,并且它们在Pr60gag结构中的顺序是p16-p28-p2-p8-p1-p6。针对纯化的p28和p16制备的兔抗血清显示与病毒制剂中存在的60、54和47千道尔顿的蛋白发生交叉反应,分别认为这些蛋白是SIVMne Pr60gag和中间裂解产物。已证明SIVMne p16含有共价结合的肉豆蔻酸,并且p8被鉴定为核酸结合蛋白。SIV和HIV-2在SIV Pr60gag中已证实的蛋白水解裂解位点周围的高度氨基酸序列同源性表明,HIV-2 gag前体的蛋白水解加工可能与SIV gag前体的加工非常相似。SIV gag前体蛋白水解加工过程中裂解的肽键与HIV-1 gag前体加工过程中裂解的键相似,这表明SIV和HIV病毒蛋白酶具有相似的裂解位点特异性。