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Antigenic characterization of the human immunodeficiency virus (HIV-1) envelope glycoprotein precursor incorporated into nanodiscs

机译:纳入纳米光盘的人类免疫缺陷病毒(HIV-1)包膜糖蛋白前体的抗原表征

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摘要

The entry of human immunodeficiency virus (HIV-1) into host cells is mediated by the viral envelope glycoproteins (Envs), which are derived by the proteolytic cleavage of a trimeric gp160 Env precursor. The mature Env trimer is a major target for entry inhibitors and vaccine-induced neutralizing antibodies. Env interstrain variability, conformational flexibility and heavy glycosylation contribute to evasion of the host immune response, and create challenges for structural characterization and vaccine development. Here we investigate variables associated with reconstitution of the HIV-1 Env precursor into nanodiscs, nanoscale lipid bilayer discs enclosed by membrane scaffolding proteins. We identified detergents, as well as lipids similar in composition to the viral lipidome, that allowed efficient formation of Env-nanodiscs (Env-NDs). Env-NDs were created with the full-length Env precursor and with an Env precursor with the majority of the cytoplasmic tail intact. The self-association of Env-NDs was decreased by glutaraldehyde crosslinking. The Env-NDs exhibited an antigenic profile expected for the HIV-1 Env precursor. Env-NDs were recognized by broadly neutralizing antibodies. Of note, neutralizing antibody epitopes in the gp41 membrane-proximal external region and in the gp120:gp41 interface were well exposed on Env-NDs compared with Env expressed on cell surfaces. Most Env epitopes recognized by non-neutralizing antibodies were masked on the Env-NDs. This antigenic profile was stable for several days, exhibiting a considerably longer half-life than that of Env solubilized in detergents. Negative selection with weak neutralizing antibodies could be used to improve the antigenic profile of the Env-NDs. Finally, we show that lipid adjuvants can be incorporated into Env-NDs. These results indicate that Env-NDs represent a potentially useful platform for investigating the structural, functional and antigenic properties of the HIV-1 Env trimer in a membrane context.
机译:人免疫缺陷病毒(HIV-1)进入宿主细胞是由病毒包膜糖蛋白(Envs)介导的,该蛋白是通过三聚体gp160 Env前体的蛋白水解作用而衍生的。成熟的Env三聚体是进入抑制剂和疫苗诱导的中和抗体的主要靶标。 Env株间变异性,构象柔韧性和重糖基化有助于逃避宿主免疫反应,并为结构表征和疫苗开发带来挑战。在这里,我们研究了与将HIV-1 Env前体重构为纳米膜,被膜支架蛋白封闭的纳米级脂质双层盘相关的变量。我们确定了清洁剂,以及与病毒脂质组类似的脂质,可以有效形成Env-nanodiscs(Env-NDs)。用全长Env前体和大部分细胞质尾巴完整的Env前体产生Env-ND。戊二醛交联降低了Env-NDs的自缔合。 Env-NDs表现出预期的HIV-1 Env前体的抗原特性。 Env-NDs被广泛中和抗体所识别。值得注意的是,与在细胞表面表达的Env相比,gp41膜近端外部区域和gp120:gp41界面中的中和抗体表位在Env-ND上暴露良好。非中和抗体识别的大多数Env表位在Env-ND上被掩盖。该抗原谱稳定了几天,显示出比溶解在洗涤剂中的Env更长的半衰期。弱中和抗体的阴性选择可用于改善Env-ND的抗原特性。最后,我们表明脂质佐剂可以并入Env-NDs。这些结果表明,Env-NDs代表了一个潜在有用的平台,可用于在膜环境中研究HIV-1 Env三聚体的结构,功能和抗原特性。

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