Department of Medicine, Section of Rheumatology, University of Chicago, Chicago, IL, USA.
Department of Integrative Structural and Computational Biology, The Scripps Research Institute, La Jolla, CA, USA.
Nature. 2022 Feb;602(7896):314-320. doi: 10.1038/s41586-021-04356-8. Epub 2021 Dec 23.
Broadly neutralizing antibodies that target epitopes of haemagglutinin on the influenza virus have the potential to provide near universal protection against influenza virus infection. However, viral mutants that escape broadly neutralizing antibodies have been reported. The identification of broadly neutralizing antibody classes that can neutralize viral escape mutants is critical for universal influenza virus vaccine design. Here we report a distinct class of broadly neutralizing antibodies that target a discrete membrane-proximal anchor epitope of the haemagglutinin stalk domain. Anchor epitope-targeting antibodies are broadly neutralizing across H1 viruses and can cross-react with H2 and H5 viruses that are a pandemic threat. Antibodies that target this anchor epitope utilize a highly restricted repertoire, which encodes two public binding motifs that make extensive contacts with conserved residues in the fusion peptide. Moreover, anchor epitope-targeting B cells are common in the human memory B cell repertoire and were recalled in humans by an oil-in-water adjuvanted chimeric haemagglutinin vaccine, which is a potential universal influenza virus vaccine. To maximize protection against seasonal and pandemic influenza viruses, vaccines should aim to boost this previously untapped source of broadly neutralizing antibodies that are widespread in the human memory B cell pool.
广谱中和抗体针对流感病毒血凝素上的表位,有可能提供针对流感病毒感染的近乎普遍的保护。然而,已经报道了逃避广谱中和抗体的病毒突变体。鉴定能够中和病毒逃逸突变体的广谱中和抗体类别对于通用流感病毒疫苗设计至关重要。在这里,我们报告了一类针对血凝素茎域离散膜近端锚定表位的独特广谱中和抗体。锚定表位靶向抗体对 H1 病毒具有广谱中和作用,并且可以与 H2 和 H5 病毒发生交叉反应,这些病毒是大流行的威胁。靶向该锚定表位的抗体利用高度受限的 repertoire,该 repertoire 编码两个公共结合基序,与融合肽中的保守残基广泛接触。此外,靶向锚定表位的 B 细胞在人类记忆 B 细胞库中很常见,并且在人类中被油包水佐剂嵌合血凝素疫苗召回,这是一种潜在的通用流感病毒疫苗。为了最大限度地预防季节性和大流行性流感病毒,疫苗应旨在增强这种以前未被开发的广谱中和抗体的来源,这种抗体在人类记忆 B 细胞库中广泛存在。