Complete epitopes for vaccine design derived from a crystal structure of the broadly neutralizing antibodies PGT128 and 8ANC195 in complex with an HIV-1 Env trimer.

Leopold Kong, Alba Torrents de la Peña, Marc C Deller, Fernando Garces, Kwinten Sliepen, Yuanzi Hua, Robyn L Stanfield, Rogier W Sanders, Ian A Wilson
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Abstract

The HIV-1 envelope gp160 glycoprotein (Env) is a trimer of gp120 and gp41 heterodimers that mediates cell entry and is the primary target of the humoral immune response. Broadly neutralizing antibodies (bNAbs) to HIV-1 have revealed multiple epitopes or sites of vulnerability, but mapping of most of these sites is incomplete owing to a paucity of structural information on the full epitope in the context of the Env trimer. Here, a crystal structure of the soluble BG505 SOSIP gp140 trimer at 4.6 Å resolution with the bNAbs 8ANC195 and PGT128 reveals additional interactions in comparison to previous antibody-gp120 structures. For 8ANC195, in addition to previously documented interactions with gp120, a substantial interface with gp41 is now elucidated that includes extensive interactions with the N637 glycan. Surprisingly, removal of the N637 glycan did not impact 8ANC195 affinity, suggesting that the antibody has evolved to accommodate this glycan without loss of binding energy. PGT128 indirectly affects the N262 glycan by a domino effect, in which PGT128 binds to the N301 glycan, which in turn interacts with and repositions the N262 glycan, thereby illustrating the important role of neighboring glycans on epitope conformation and stability. Comparisons with other Env trimer and gp120 structures support an induced conformation for glycan N262, suggesting that the glycan shield is allosterically modified upon PGT128 binding. These complete epitopes of two broadly neutralizing antibodies on the Env trimer can now be exploited for HIV-1 vaccine design.

Abstract Image

Abstract Image

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从广泛中和抗体 PGT128 和 8ANC195 与 HIV-1 Env 三聚体复合物的晶体结构中得出用于疫苗设计的完整表位。
HIV-1 包膜 gp160 糖蛋白(Env)是 gp120 和 gp41 杂二聚体的三聚体,它介导细胞进入,是体液免疫反应的主要靶标。针对 HIV-1 的广谱中和抗体(bNAbs)揭示了多个表位或易损位点,但由于缺乏 Env 三聚体中完整表位的结构信息,大多数这些位点的图谱并不完整。在这里,可溶性 BG505 SOSIP gp140 三聚体与 bNAbs 8ANC195 和 PGT128 的 4.6 Å 分辨率晶体结构揭示了与以前的抗体-gp120 结构相比更多的相互作用。对于 8ANC195,除了以前记录的与 gp120 的相互作用外,现在还阐明了与 gp41 的实质性界面,其中包括与 N637 聚糖的广泛相互作用。令人惊讶的是,移除 N637 聚糖并不会影响 8ANC195 的亲和力,这表明抗体已经进化到可以容纳该聚糖而不损失结合能量。PGT128 通过多米诺骨牌效应间接影响 N262 聚糖,其中 PGT128 与 N301 聚糖结合,N301 聚糖又与 N262 聚糖相互作用并重新定位 N262 聚糖,从而说明了邻近聚糖对表位构象和稳定性的重要作用。与其他 Env 三聚体和 gp120 结构的比较支持 N262 聚糖的诱导构象,表明聚糖屏蔽在 PGT128 结合后发生了异生修饰。现在可以利用 Env 三聚体上两种广泛中和抗体的完整表位来设计 HIV-1 疫苗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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