Icahn School of Medicine at Mount Sinai, New York, New York, United States of America.
James J. Peters Veterans Affairs Medical Center, Research Service, Bronx, New York, United States of America.
PLoS Pathog. 2020 Dec 28;16(12):e1009185. doi: 10.1371/journal.ppat.1009185. eCollection 2020 Dec.
HIV-1 envelope (Env) is a trimer of gp120-gp41 heterodimers, synthesized from a precursor gp160 that contains an ER-targeting signal peptide (SP) at its amino-terminus. Each trimer is swathed by ~90 N-linked glycans, comprising complex-type and oligomannose-type glycans, which play an important role in determining virus sensitivity to neutralizing antibodies. We previously examined the effects of single point SP mutations on Env properties and functions. Here, we aimed to understand the impact of the SP diversity on glycosylation of virus-derived Env and virus neutralization by swapping SPs. Analyses of site-specific glycans revealed that SP swapping altered Env glycan content and occupancy on multiple N-linked glycosites, including conserved N156 and N160 glycans in the V1V2 region at the Env trimer apex and N88 at the trimer base. Virus neutralization was also affected, especially by antibodies against V1V2, V3, and gp41. Likewise, SP swaps affected the recognition of soluble and cell-associated Env by antibodies targeting distinct V1V2 configurations, V3 crown, and gp41 epitopes. These data highlight the contribution of SP sequence diversity in shaping the Env glycan content and its impact on the configuration and accessibility of V1V2 and other Env epitopes.
HIV-1 包膜 (Env) 是三聚体的 gp120-gp41 异二聚体,由其氨基末端含有内质网靶向信号肽 (SP) 的前体 gp160 合成。每个三聚体都被约 90 个 N 连接聚糖包裹,包括复杂型和寡甘露糖型聚糖,它们在决定病毒对中和抗体的敏感性方面起着重要作用。我们之前研究了单个 SP 突变对 Env 特性和功能的影响。在这里,我们旨在通过交换 SP 来了解 SP 多样性对病毒衍生的 Env 糖基化和病毒中和的影响。对位点特异性聚糖的分析表明,SP 交换改变了 Env 聚糖的含量和多个 N 连接糖基化位点的占有率,包括 Env 三聚体顶端 V1V2 区域的保守 N156 和 N160 聚糖以及三聚体基部的 N88。病毒中和也受到影响,特别是针对 V1V2、V3 和 gp41 的抗体。同样,SP 交换也影响了针对不同 V1V2 构象、V3 冠和 gp41 表位的抗体对可溶性和细胞相关 Env 的识别。这些数据突出了 SP 序列多样性在塑造 Env 聚糖含量及其对 V1V2 和其他 Env 表位的构象和可及性的影响。