Department of Cancer Immunology and Virology, Dana-Farber Cancer Institute, Boston, MA, USA.
Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, Worcester, MA, USA.
Nat Commun. 2021 Jan 25;12(1):559. doi: 10.1038/s41467-020-20879-6.
Broadly neutralizing antibodies (bnAbs) targeting conserved influenza A virus (IAV) hemagglutinin (HA) epitopes can provide valuable information for accelerating universal vaccine designs. Here, we report structural details for heterosubtypic recognition of HA from circulating and emerging IAVs by the human antibody 3I14. Somatic hypermutations play a critical role in shaping the HCDR3, which alone and uniquely among V3-30 derived antibodies, forms contacts with five sub-pockets within the HA-stem hydrophobic groove. 3I14 light-chain interactions are also key for binding HA and contribute a large buried surface area spanning two HA protomers. Comparison of 3I14 to bnAbs from several defined classes provide insights to the bias selection of V3-30 antibodies and reveals that 3I14 represents a novel structural solution within the V3-30 repertoire. The structures reported here improve our understanding of cross-group heterosubtypic binding activity, providing the basis for advancing immunogen designs aimed at eliciting a broadly protective response to IAV.
广谱中和抗体(bnAbs)针对保守的流感 A 病毒(IAV)血凝素(HA)表位,可以为加速通用疫苗设计提供有价值的信息。在这里,我们报告了人类抗体 3I14 对循环和新兴 IAV 的 HA 的异源亚型识别的结构细节。体细胞超突变在塑造 HCDR3 中起着关键作用,HCDR3 单独且在 V3-30 衍生的抗体中独一无二,与 HA-茎疏水槽中的五个亚袋形成接触。3I14 轻链相互作用对于结合 HA 也很关键,并贡献了跨越两个 HA 原聚体的大埋藏表面积。将 3I14 与来自几个定义明确的类别中的 bnAbs 进行比较,可以深入了解 V3-30 抗体的偏向选择,并揭示 3I14 代表了 V3-30 库中的一种新的结构解决方案。这里报道的结构提高了我们对跨组异源结合活性的理解,为推进旨在引发对 IAV 广泛保护反应的免疫原设计提供了基础。