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Yeast-Elicited Cross-Reactive Antibodies to HIV Env Glycans Efficiently Neutralize Virions Expressing Exclusively High-Mannose N-Linked Glycans▿

机译:酵母菌针对HIV Env聚糖的交叉反应抗体可有效中和表达高甘露糖N联糖的病毒颗粒▿

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摘要

The HIV envelope (Env) protein uses a dense coat of glycans to mask conserved domains and evade host humoral immune responses. The broadly neutralizing antibody 2G12, which binds a specific cluster of high-mannose glycans on HIV Env, shows that the glycan shield can also serve as a target for neutralizing antibodies. We have described a triple mutant Saccharomyces cerevisiae strain that expresses high-mannose glycoproteins that bind to 2G12. When used to immunize rabbits, this yeast elicits antibodies that bind to gp120-associated glycans but fail to neutralize virus. Here we sought to determine the reason for these discordant results. Affinity purification of sera over columns conjugated with three 2G12-reactive yeast glycoproteins showed that these proteins could adsorb 80% of the antibodies that bind to gp120 glycans. Despite binding to monomeric gp120, these mannose-specific antibodies failed to bind cell surface-expressed trimeric Env. However, when Env was expressed in the presence of the mannosidase inhibitor kifunensine to force retention of high-mannose glycans at all sites, the purified antibodies gained the abilities to bind trimeric Env and to strongly and broadly neutralize viruses produced under these conditions. Combined, these data show that the triple mutant yeast strain elicits antibodies that bind to high-mannose glycans presented on the HIV envelope, but only when they are displayed in a manner not found on native Env trimers. This implies that the underlying structure of the protein scaffold used to present the high-mannose glycans may be critical to allow elicitation of antibodies that recognize trimeric Env and neutralize virus.
机译:HIV包膜(Env)蛋白使用致密的聚糖涂层掩盖保守域并逃避宿主体液免疫反应。广泛中和抗体2G12与HIV Env上的高甘露糖聚糖的特定簇结合,表明聚糖屏蔽也可以用作中和抗体的靶标。我们已经描述了表达结合到2G12的高甘露糖糖蛋白的三突变体酿酒酵母菌株。当用于免疫兔时,该酵母会引发与gp120相关的聚糖结合但无法中和病毒的抗体。在这里,我们试图确定产生这些不一致结果的原因。在与三种2G12反应性酵母糖蛋白缀合的柱上进行血清亲和纯化显示,这些蛋白可以吸附80%结合gp120聚糖的抗体。尽管与单体gp120结合,但这些甘露糖特异性抗体仍未能结合细胞表面表达的三聚体Env。然而,当在甘露糖苷酶抑制剂kifunensine的存在下表达Env以迫使高甘露糖聚糖保留在所有位点时,纯化的抗体就具有结合三聚体Env的能力,并能强烈和广泛地中和在这些条件下产生的病毒。综合起来,这些数据表明,三重突变酵母菌株引发与HIV包膜上呈现的高甘露糖聚糖结合的抗体,但仅当它们以天然Env三聚体上未发现的方式展示时。这暗示用于呈现高甘露糖聚糖的蛋白质支架的基础结构对于允许识别识别三聚体Env和中和病毒的抗体可能是至关重要的。

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