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可溶性 HIV 包膜糖蛋白与四元结构特异性单克隆抗体 PG9 和 PG16 的结合相互作用。

Binding interactions between soluble HIV envelope glycoproteins and quaternary-structure-specific monoclonal antibodies PG9 and PG16.

机构信息

Seattle Biomedical Research Institute, 307 Westlake Avenue North, Seattle, WA 98109, USA.

出版信息

J Virol. 2011 Jul;85(14):7095-107. doi: 10.1128/JVI.00411-11. Epub 2011 May 4.

Abstract

PG9 and PG16 are antibodies isolated from a subject infected with HIV-1 and display broad anti-HIV neutralizing activities. They recognize overlapping epitopes, which are preferentially expressed on the membrane-anchored trimeric form of the HIV envelope glycoprotein (Env). PG9 and PG16 were reported not to bind to soluble mimetics of Env. The engineering of soluble Env proteins on which the PG9 and PG16 epitopes are optimally exposed will support efforts to elicit broad anti-HIV neutralizing antibodies by immunization. Here, we identified several soluble gp140 Env proteins that are recognized by PG9 and PG16, and we investigated the molecular details of those binding interactions. The IgG versions of PG9 and PG16 recognize the soluble trimeric gp140 form less efficiently than the corresponding monomeric gp140 form. In contrast, the Fab versions of PG9 and PG16 recognized the monomeric and trimeric gp140 forms with identical binding kinetics and with binding affinities similar to the high binding affinity of the anti-V3 antibody 447D to its epitope. Our data also indicate that, depending on the Env backbone, the interactions of PG9 and PG16 with gp140 may be facilitated by the presence of the gp41 ectodomain and are independent of the proper enzymatic cleavage of gp140 into gp120 and gp41. The identification of soluble Env proteins that express the PG9 and PG16 epitopes and the detailed characterization of the molecular interactions between these two antibodies and their ligands provide important and novel information that will assist in improving the engineering of future Env immunogens.

摘要

PG9 和 PG16 是从感染 HIV-1 的受试者中分离出来的抗体,具有广泛的抗 HIV 中和活性。它们识别重叠的表位,这些表位优先表达在 HIV 包膜糖蛋白(Env)的膜锚定三聚体形式上。据报道,PG9 和 PG16 不会与 Env 的可溶性模拟物结合。对 PG9 和 PG16 表位最佳暴露的可溶性 Env 蛋白的工程改造将支持通过免疫接种产生广泛的抗 HIV 中和抗体的努力。在这里,我们鉴定了几种可被 PG9 和 PG16 识别的可溶性 gp140 Env 蛋白,并研究了这些结合相互作用的分子细节。PG9 和 PG16 的 IgG 版本识别可溶性三聚体 gp140 形式的效率不如相应的单体 gp140 形式。相比之下,PG9 和 PG16 的 Fab 版本以相同的结合动力学识别单体和三聚体 gp140 形式,结合亲和力与抗 V3 抗体 447D 与其表位的高结合亲和力相似。我们的数据还表明,根据 Env 骨干,PG9 和 PG16 与 gp140 的相互作用可能取决于 gp41 外域的存在,并且独立于 gp140 正确酶切为 gp120 和 gp41。鉴定表达 PG9 和 PG16 表位的可溶性 Env 蛋白以及这两种抗体与其配体之间的分子相互作用的详细特征提供了重要和新颖的信息,这将有助于改进未来 Env 免疫原的工程设计。

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