Department of Microbiology and Immunology, Emory University School of Medicine, Atlanta, GA 30322.
Department of Microbiology, School of Medicine, Kyungpook National University, Daegu 41944, The Republic of Korea.
Proc Natl Acad Sci U S A. 2023 Apr 25;120(17):e2208718120. doi: 10.1073/pnas.2208718120. Epub 2023 Apr 17.
The hemagglutinin (HA) stem region is a major target of universal influenza vaccine efforts owing to the presence of highly conserved epitopes across multiple influenza A virus (IAV) strains and subtypes. To explore the potential impact of vaccine-induced immunity targeting the HA stem, we examined the fitness effects of viral escape from stem-binding broadly neutralizing antibodies (stem-bnAbs). Recombinant viruses containing each individual antibody escape substitution showed diminished replication compared to wild-type virus, indicating that stem-bnAb escape incurred fitness costs. A second-site mutation in the HA head domain (N129D; H1 numbering) reduced the fitness effects observed in primary cell cultures and likely enabled the selection of escape mutations. Functionally, this putative permissive mutation increased HA avidity for its receptor. These results suggest a mechanism of epistasis in IAV, wherein modulating the efficiency of attachment eases evolutionary constraints imposed by the requirement for membrane fusion. Taken together, the data indicate that viral escape from stem-bnAbs is costly but highlights the potential for epistatic interactions to enable evolution within the functionally constrained HA stem domain.
血凝素 (HA) 茎区是通用流感疫苗努力的主要目标,因为在多种甲型流感病毒 (IAV) 株和亚型中存在高度保守的表位。为了探索针对 HA 茎的疫苗诱导免疫的潜在影响,我们研究了病毒逃避茎结合广泛中和抗体 (茎-bnAb) 的适应性影响。含有每个抗体逃逸取代的重组病毒与野生型病毒相比复制能力降低,表明茎-bnAb 逃逸导致适应性成本。HA 头部结构域中的第二个位点突变(N129D;H1 编号)降低了在原代细胞培养物中观察到的适应性影响,并且可能允许选择逃逸突变。在功能上,这种假定的许可突变增加了 HA 与其受体的亲和力。这些结果表明 IAV 中存在上位性机制,其中调节附着效率可以减轻膜融合要求所施加的进化约束。总之,数据表明,病毒逃避茎-bnAb 是有代价的,但突出了上位性相互作用在功能受限的 HA 茎结构域内促进进化的潜力。