Janssen Vaccines & Prevention BV, 2333 CN Leiden, The Netherlands.
Janssen Vaccines & Prevention BV, 2333 CN Leiden, The Netherlands
Proc Natl Acad Sci U S A. 2022 Feb 8;119(6). doi: 10.1073/pnas.2115379119.
For an efficacious vaccine immunogen, influenza hemagglutinin (HA) needs to maintain a stable quaternary structure, which is contrary to the inherently dynamic and metastable nature of class I fusion proteins. In this study, we stabilized HA with three substitutions within its pH-sensitive regions where the refolding starts. An X-ray structure reveals how these substitutions stabilize the intersubunit β-sheet in the base and form an interprotomeric aliphatic layer across the stem while the native prefusion HA fold is retained. The identification of the stabilizing substitutions increases our understanding of how the pH sensitivity is structurally accomplished in HA and possibly other pH-sensitive class I fusion proteins. Our stabilization approach in combination with the occasional back mutation of rare amino acids to consensus results in well-expressing stable trimeric HAs. This repair and stabilization approach, which proves broadly applicable to all tested influenza A HAs of group 1 and 2, will improve the developability of influenza vaccines based on different types of platforms and formats and can potentially improve efficacy.
对于有效的疫苗免疫原,流感血凝素 (HA) 需要保持稳定的四级结构,而这与 I 类融合蛋白固有的动态和亚稳定性质相矛盾。在这项研究中,我们通过在 HA 的 pH 敏感区域内的三个取代来稳定其结构,该区域是重折叠开始的位置。X 射线结构揭示了这些取代如何稳定基础的亚单位间β-片层,并在保持融合前 HA 折叠的同时形成跨茎的同三聚体非极性层。稳定取代的鉴定增加了我们对 HA 中和其他 pH 敏感 I 类融合蛋白中 pH 敏感性如何在结构上实现的理解。我们的稳定方法与罕见氨基酸偶尔回复到共识的突变相结合,产生了表达良好的稳定三聚体 HA。这种修复和稳定方法已被证明广泛适用于所有测试的 1 型和 2 型流感 AHA,将提高基于不同类型平台和格式的流感疫苗的开发性,并有可能提高疗效。