Sanders Rogier W, Vesanen Mika, Schuelke Norbert, Master Aditi, Schiffner Linnea, Kalyanaraman Roopa, Paluch Maciej, Berkhout Ben, Maddon Paul J, Olson William C, Lu Min, Moore John P
Department of Microbiology and Immunology, Weill Medical College, Cornell University, New York, New York 10021, USA.
J Virol. 2002 Sep;76(17):8875-89. doi: 10.1128/jvi.76.17.8875-8889.2002.
The envelope glycoprotein (Env) complex of human immunodeficiency virus type 1 has evolved a structure that is minimally immunogenic while retaining its natural function of receptor-mediated virus-cell fusion. The Env complex is trimeric; its six individual subunits (three gp120 and three gp41 subunits) are associated by relatively weak, noncovalent interactions. The induction of neutralizing antibodies after vaccination with individual Env subunits has proven very difficult, probably because they are inadequate mimics of the native complex. Our hypothesis is that a stable form of the Env complex, perhaps with additional modifications to rationally alter its antigenic structure, may be a better immunogen than the individual subunits. A soluble form of Env, SOS gp140, can be made that has gp120 stably linked to the gp41 ectodomain by an intermolecular disulfide bond. This protein is fully cleaved at the proteolysis site between gp120 and gp41. However, the gp41-gp41 interactions in SOS gp140 are too weak to maintain the protein in a trimeric configuration. Consequently, purified SOS gp140 is a monomer (N. Schülke, M. S. Vesanen, R. W. Sanders, P. Zhu, D. J. Anselma, A. R. Villa, P. W. H. I. Parren, J. M. Binley, K. H. Roux, P. J. Maddon, J. P. Moore, and W. C. Olson, J. Virol. 76:7760-7776, 2002). Here we describe modifications of SOS gp140 that increase its trimer stability. A variant SOS gp140, designated SOSIP gp140, contains an isoleucine-to-proline substitution at position 559 in the N-terminal heptad repeat region of gp41. This protein is fully cleaved, has favorable antigenic properties, and is predominantly trimeric. SOSIP gp140 trimers are noncovalently associated and can be partially purified by gel filtration chromatography. These gp140 trimers are dissociated into monomers by anionic detergents or heat but are relatively resistant to nonionic detergents, high salt concentrations, or exposure to a mildly acidic pH. SOSIP gp140 should be a useful reagent for structural and immunogenicity studies.
1型人类免疫缺陷病毒的包膜糖蛋白(Env)复合物已经进化出一种结构,这种结构具有最小的免疫原性,同时保留其受体介导的病毒 - 细胞融合的天然功能。Env复合物是三聚体;其六个单独的亚基(三个gp120和三个gp41亚基)通过相对较弱的非共价相互作用结合在一起。用单个Env亚基进行疫苗接种后诱导中和抗体已被证明非常困难,可能是因为它们不能充分模拟天然复合物。我们的假设是,一种稳定形式的Env复合物,或许经过合理修饰以改变其抗原结构,可能是比单个亚基更好的免疫原。可以制备一种可溶性形式的Env,即SOS gp140,它通过分子间二硫键使gp120与gp41胞外结构域稳定连接。这种蛋白质在gp120和gp41之间的蛋白水解位点完全裂解。然而,SOS gp140中gp41 - gp41之间的相互作用太弱,无法使蛋白质保持三聚体构型。因此,纯化的SOS gp140是单体(N. Schülke,M. S. Vesanen,R. W. Sanders,P. Zhu,D. J. Anselma,A. R. Villa,P. W. H. I. Parren,J. M. Binley,K. H. Roux,P. J. Maddon,J. P. Moore,和W. C. Olson,J. Virol. 76:7760 - 7776,2002)。在这里,我们描述了对SOS gp140的修饰,这些修饰增加了其三聚体稳定性。一种变体SOS gp140,称为SOSIP gp140,在gp41的N端七肽重复区域的第559位含有异亮氨酸到脯氨酸的取代。这种蛋白质完全裂解,具有良好的抗原特性,并且主要是三聚体。SOSIP gp140三聚体通过非共价结合,可以通过凝胶过滤色谱法进行部分纯化。这些gp140三聚体可被阴离子去污剂或加热解离成单体,但对非离子去污剂、高盐浓度或暴露于轻度酸性pH相对抗性较强。SOSIP gp140应该是用于结构和免疫原性研究的有用试剂。