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An Antigenic Atlas of HIV-1 Escape from Broadly Neutralizing Antibodies Distinguishes Functional and Structural Epitopes

机译:HIV-1的抗原阿特拉斯免受宽度中和抗体的抗体区分功能和结构表位

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摘要

Anti-HIV broadly neutralizing antibodies (bnAbs) have revealed vaccine targets on the virus's envelope (Env) protein and are themselves promising immunotherapies. The efficacy of bnAb-based therapies and vaccines depends in part on how readily the virus can escape neutralization. Although structural studies can define contacts between bnAbs and Env, only functional studies can define mutations that confer escape. Here, we mapped how all possible single amino acid mutations in Env affect neutralization of HIV by nine bnAbs targeting five epitopes. For most bnAbs, mutations at only a small fraction of structurally defined contact sites mediated escape, and most escape occurred at sites near, but not in direct contact with, the antibody. The Env mutations selected by two pooled bnAbs were similar to those expected from the combination of the bnAbs's independent action. Overall, our mutation-level antigenic atlas provides a comprehensive dataset for understanding viral immune escape and refining therapies and vaccines.
机译:抗HIV宽度中和抗体(BNABs)揭示了病毒包膜(ENV)蛋白质上的疫苗靶标,并且本身是有前途的免疫治疗。基于BNAB的疗法和疫苗的疗效部分取决于病毒可以逃逸中和的程度依赖。虽然结构研究可以在BNABS和ENV之间定义接触,但只有功能性研究可以定义赋予逃生的突变。在这里,我们映射了Env中的所有可能的单个氨基酸突变在靶向五个表位的九个BNAB中的中和艾滋病毒的中和。对于大多数BNAB,仅介导的结构定义的接触位点的突变介导逃逸,并且在附近的地点发生大部分逃逸,但不与抗体直接接触。由两个合并的BNAB选择的ENV突变与BNABS独立行动的组合的预期相似。总体而言,我们的突变级抗原阿特拉斯提供了一个综合数据集,用于了解病毒免疫逃逸和精炼治疗和疫苗。

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