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Mapping the complete glycoproteome of virion-derived HIV-1 gp120 provides insights into broadly neutralizing antibody binding

机译:绘制病毒体来源的HIV-1 gp120的完整糖蛋白组图可提供深入了解广泛中和抗体结合的见解

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The surface envelope glycoprotein (SU) of Human immunodeficiency virus type 1 (HIV-1), gp120(SU) plays an essential role in virus binding to target CD4+ T-cells and is a major vaccine target. Gp120 has remarkably high levels of N-linked glycosylation and there is considerable evidence that this "glycan shield" can help protect the virus from antibody-mediated neutralization. In recent years, however, it has become clear that gp120 glycosylation can also be included in the targets of recognition by some of the most potent broadly neutralizing antibodies. Knowing the site-specific glycosylation of gp120 can facilitate the rational design of glycopeptide antigens for HIV vaccine development. While most prior studies have focused on glycan analysis of recombinant forms of gp120, here we report the first systematic glycosylation site analysis of gp120 derived from virions produced by infected T lymphoid cells and show that a single site is exclusively substituted with complex glycans. These results should help guide the design of vaccine immunogens.
机译:人类免疫缺陷病毒1型(HIV-1)的表面包膜糖蛋白(SU)gp120(SU)在病毒与靶CD4 + T细胞结合中起着至关重要的作用,并且是主要的疫苗靶标。 Gp120具有非常高的N-联糖基化水平,并且有相当多的证据表明这种“聚糖屏蔽”可以帮助保护病毒免受抗体介导的中和作用。然而,近年来,已经清楚的是,一些最有效的广泛中和抗体也可以将gp120糖基化包括在识别靶标中。知道gp120的位点特异性糖基化可以促进针对HIV疫苗开发的糖肽抗原的合理设计。虽然大多数先前的研究都集中在gp120重组形式的聚糖分析上,但在这里我们报道了gp120的首次系统糖基化位点分析,该位点来源于感染的T淋巴样细胞产生的病毒体,并显示单个位点仅被复杂的聚糖取代。这些结果应有助于指导疫苗免疫原的设计。

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