van Beek Lucille F, Surmann Kristin, van den Berg van Saparoea H Bart, Houben Diane, Jong Wouter S P, Hentschker Christian, Ederveen Thomas H A, Mitsi Elena, Ferreira Daniela M, van Opzeeland Fred, van der Gaast-de Jongh Christa E, Joosten Irma, Völker Uwe, Schmidt Frank, Luirink Joen, Diavatopoulos Dimitri A, de Jonge Marien I
Section Pediatric Infectious Diseases, Laboratory of Medical Immunology, Radboud Institute for Molecular Life Sciences , Nijmegen, The Netherlands.
Radboud Center for Infectious Diseases , Nijmegen, The Netherlands.
Virulence. 2020 Dec;11(1):1310-1328. doi: 10.1080/21505594.2020.1825908.
Nasopharyngeal colonization by is a prerequisite for pneumococcal transmission and disease. Current vaccines protect only against disease and colonization caused by a limited number of serotypes, consequently allowing serotype replacement and transmission. Therefore, the development of a broadly protective vaccine against colonization, transmission and disease is desired but requires a better understanding of pneumococcal adaptation to its natural niche. Hence, we measured the levels of free and protein-bound transition metals in human nasal fluid, to determine the effect of metal concentrations on the growth and proteome of . Pneumococci cultured in medium containing metal levels comparable to nasal fluid showed a highly distinct proteomic profile compared to standard culture conditions, including the increased abundance of nine conserved, putative surface-exposed proteins. AliA, an oligopeptide binding protein, was identified as the strongest protective antigen, demonstrated by the significantly reduced bacterial load in a murine colonization and a lethal mouse pneumonia model, highlighting its potential as vaccine antigen.
肺炎链球菌在鼻咽部定植是其传播和致病的先决条件。目前的疫苗仅能预防由有限数量血清型引起的疾病和定植,因此会导致血清型替换和传播。所以,人们期望开发一种针对定植、传播和疾病的广泛保护性疫苗,但这需要更好地了解肺炎链球菌对其自然生态位的适应性。因此,我们测量了人鼻液中游离和与蛋白质结合的过渡金属水平,以确定金属浓度对肺炎链球菌生长和蛋白质组的影响。与标准培养条件相比,在含有与鼻液相当金属水平的培养基中培养的肺炎链球菌显示出高度独特的蛋白质组学特征,包括九种保守的、假定暴露于表面的蛋白质丰度增加。寡肽结合蛋白AliA被鉴定为最强的保护性抗原,在小鼠定植和致死性小鼠肺炎模型中,细菌载量显著降低证明了这一点,突出了其作为疫苗抗原 的潜力。