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Outer Domain of HIV-1 gp120: Antigenic Optimization Structural Malleability and Crystal Structure with Antibody VRC-PG04

机译:HIV-1 gp120的外部域:抗体VRC-PG04的抗原优化结构可塑性和晶体结构

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摘要

The outer domain of the HIV-1 gp120 envelope glycoprotein contains the epitope for broadly neutralizing antibodies directed to the CD4-binding site, many of which are able to neutralize over 90% of circulating HIV-1 isolates. While the outer domain is conformationally more stable than other portions of the HIV-1 envelope, efforts to express the outer domain as an immunogen for eliciting broadly neutralizing antibodies have not been successful, potentially because natural outer domain variants do not bind strongly to antibodies such as VRC01. In this study, we optimized the antigenic properties of the HIV-1 Env outer domain to generate OD4.2.2, from the KER2018 strain of clade A HIV-1, enabling it to bind antibodies such as VRC01 with nanomolar affinity. The crystal structure of OD4.2.2 in complex with VRC-PG04 was solved at 3.0-Å resolution and compared to known crystal structures including (i) the structure of core gp120 bound by VRC-PG04 and (ii) a circularly permutated version of the outer domain in complex with antibody PGT128. Much of the VRC-PG04 epitope was preserved in the OD4.2.2 structure, though with altered N and C termini conformations. Overall, roughly one-third of the outer domain structure appeared to be fixed in conformation, independent of alterations in termini, clade, or ligand, while other portions of the outer domain displayed substantial structural malleability. The crystal structure of OD4.2.2 with VRC-PG04 provides atomic-level details for an HIV-1 domain recognized by broadly neutralizing antibodies and insights relevant to the rational design of an immunogen that could elicit such antibodies by vaccination.
机译:HIV-1 gp120包膜糖蛋白的外部结构域包含抗原表位,可广泛中和针对CD4结合位点的抗体,其中许多抗体能够中和90%以上的循环HIV-1分离株。尽管外部结构域在构象上比HIV-1包膜的其他部分更稳定,但尝试将外部结构域表达为引发广泛中和抗体的免疫原的努力尚未成功,这可能是因为天然的外部结构域变体无法与抗体等牢固结合作为VRC01。在这项研究中,我们优化了HIV-1 Env外域的抗原特性,以从进化枝A HIV-1的KER2018株产生OD4.2.2,使其能够以纳摩尔亲和力结合抗体,例如VRC01。与VRC-PG04配合使用的OD4.2.2晶体结构在3.0-Å分辨率下得以解析,并与已知的晶体结构进行了比较,包括(i)VRC-PG04结合的核心gp120的结构,以及(ii)环状排列的与抗体PGT128复合的外部结构域。尽管具有改变的N和C末端构象,但大部分VRC-PG04表位仍保留在OD4.2.2结构中。总体而言,大约三分之一的外部结构域结构似乎是固定的,与末端,进化枝或配体的变化无关,而外部结构域的其他部分则显示出可观的结构延展性。带有VRC-PG04的OD4.2.2的晶体结构提供了被广泛中和抗体识别的HIV-1结构域的原子级细节,以及与免疫原性合理设计相关的见识,这种免疫原性可以通过疫苗接种引发此类抗体。

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