Novartis Vaccines and Diagnostics, 53100 Siena, Italy.
Proc Natl Acad Sci U S A. 2011 Jun 21;108(25):10278-83. doi: 10.1073/pnas.1106590108. Epub 2011 May 18.
Structural vaccinology is an emerging strategy for the rational design of vaccine candidates. We successfully applied structural vaccinology to design a fully synthetic protein with multivalent protection activity. In Group B Streptococcus, cell-surface pili have aroused great interest because of their direct roles in virulence and importance as protective antigens. The backbone subunit of type 2a pilus (BP-2a) is present in six immunogenically different but structurally similar variants. We determined the 3D structure of one of the variants, and experimentally demonstrated that protective antibodies specifically recognize one of the four domains that comprise the protein. We therefore constructed a synthetic protein constituted by the protective domain of each one of the six variants and showed that the chimeric protein protects mice against the challenge with all of the type 2a pilus-carrying strains. This work demonstrates the power of structural vaccinology and will facilitate the development of an optimized, broadly protective pilus-based vaccine against Group B Streptococcus by combining the uniquely generated chimeric protein with protective pilin subunits from two other previously identified pilus types. In addition, this work describes a template procedure that can be followed to develop vaccines against other bacterial pathogens.
结构疫苗学是一种新兴的疫苗候选物理性设计策略。我们成功地将结构疫苗学应用于设计具有多价保护活性的全合成蛋白。在 B 群链球菌中,细胞表面菌毛因其在毒力中的直接作用和作为保护性抗原的重要性而引起了极大的兴趣。2a 型菌毛(BP-2a)的骨干亚基存在于六种免疫原性不同但结构相似的变体中。我们确定了其中一个变体的 3D 结构,并通过实验证明保护性抗体特异性识别构成该蛋白的四个结构域之一。因此,我们构建了一种由六个变体中的每一个的保护性结构域组成的合成蛋白,并表明该嵌合蛋白能够保护小鼠免受所有 2a 型菌毛携带菌株的攻击。这项工作证明了结构疫苗学的力量,并将通过将独特产生的嵌合蛋白与另外两种先前鉴定的菌毛类型的保护性菌毛亚基结合,促进针对 B 群链球菌的优化、广泛保护性菌毛疫苗的开发。此外,这项工作描述了一种可以遵循的模板程序,用于开发针对其他细菌病原体的疫苗。