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来自原发性和经T细胞系传代的1型人类免疫缺陷病毒分离株的包膜糖蛋白的复制功能和中和敏感性

Replicative function and neutralization sensitivity of envelope glycoproteins from primary and T-cell line-passaged human immunodeficiency virus type 1 isolates.

作者信息

Sullivan N, Sun Y, Li J, Hofmann W, Sodroski J

机构信息

Dana-Farber Cancer Institute, Department of Pathology, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Virol. 1995 Jul;69(7):4413-22. doi: 10.1128/JVI.69.7.4413-4422.1995.

Abstract

The structure, replicative properties, and sensitivity to neutralization by soluble CD4 and monoclonal antibodies were examined for molecularly cloned envelope glycoproteins derived from human immunodeficiency virus type 1 (HIV-1) viruses either isolated directly from patients or passaged in T-cell lines. Complementation of virus entry into peripheral blood mononuclear cell targets by primary patient envelope glycoproteins exhibited efficiencies ranging from that observed for the HXBc2 envelope glycoproteins, which are derived from a T-cell line-passaged virus, to approximately fivefold-lower values. The ability of the envelope glycoproteins to complement virus entry roughly correlated with sensitivity to neutralization by soluble CD4. Laboratory-adapted viruses were sensitive to neutralization by monoclonal antibodies directed against the CD4-binding site and the third variable (V3) loop of the gp120 glycoprotein. By comparison, viruses with envelope glycoproteins from primary patient isolates exhibited decreased sensitivity to neutralization by these monoclonal antibodies; for these viruses, neutralization sensitivity correlated with replicative ability. Subinhibitory concentrations of soluble CD4 and a CD4-binding site-directed antibody significantly enhanced the entry of viruses containing envelope glycoproteins from some primary patient isolates. The sensitivity of viruses containing the different envelope glycoproteins to neutralization by soluble CD4 or monoclonal antibodies could be predicted by assays dependent on the binding of the inhibitory molecule to the oligomeric envelope glycoprotein complex but less well by assays measuring binding to the monomeric gp120 glycoprotein. These results indicate that the intrinsic structure of the oligomeric envelope glycoprotein complex of primary HIV-1 isolates, while often less than optimal with respect to the mediation of early events in virus replication, allows a relative degree of resistance to neutralizing antibodies. The interplay of selective forces for higher virus replication efficiency and resistance to neutralizing antibodies could explain the temporal course described for the in vivo emergence of HIV-1 isolates with differing phenotypes.

摘要

对从1型人类免疫缺陷病毒(HIV-1)直接分离自患者或在T细胞系中传代的分子克隆包膜糖蛋白,研究了其结构、复制特性以及对可溶性CD4和单克隆抗体中和作用的敏感性。原发性患者包膜糖蛋白对病毒进入外周血单核细胞靶标的互补作用效率范围,从源自T细胞系传代病毒的HXBc2包膜糖蛋白所观察到的效率,到大约低五倍的值。包膜糖蛋白互补病毒进入的能力大致与对可溶性CD4中和作用的敏感性相关。实验室适应病毒对针对gp120糖蛋白的CD4结合位点和第三个可变区(V3)环的单克隆抗体的中和作用敏感。相比之下,具有原发性患者分离株包膜糖蛋白的病毒对这些单克隆抗体的中和作用敏感性降低;对于这些病毒,中和敏感性与复制能力相关。可溶性CD4和CD4结合位点导向抗体的亚抑制浓度显著增强了含有某些原发性患者分离株包膜糖蛋白的病毒的进入。含有不同包膜糖蛋白的病毒对可溶性CD4或单克隆抗体中和作用的敏感性,可以通过依赖抑制分子与寡聚包膜糖蛋白复合物结合的测定来预测,但通过测量与单体gp120糖蛋白结合的测定预测效果较差。这些结果表明,原发性HIV-1分离株的寡聚包膜糖蛋白复合物的内在结构,虽然在介导病毒复制早期事件方面通常并非最佳,但允许对中和抗体有一定程度的抗性。提高病毒复制效率和抗中和抗体的选择力之间的相互作用,可以解释体内出现不同表型HIV-1分离株所描述的时间进程。

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