Department of Chemistry, University of Cape Town, Rondebosch, 7701, South Africa.
Department of Computer Science, University of Cape Town, Rondebosch, 7701, South Africa.
Glycoconj J. 2021 Dec;38(6):735-746. doi: 10.1007/s10719-021-10020-0. Epub 2021 Sep 7.
Haemophilus influenzae is a leading cause of meningitis disease and mortality, particularly in young children. Since the introduction of a licensed conjugate vaccine (targeting the outer capsular polysaccharide) against the most prevalent serotype, Haemophilus influenzae serotype b, the epidemiology of the disease has changed and Haemophilus influenzae serotype a is on the rise, especially in Indigenous North American populations. Here we apply molecular modeling to explore the preferred conformations of the serotype a and b capsular polysaccharides as well as a modified hydrolysis resistant serotype b polysaccharide. Although both serotype b and the modified serotype b have similar random coil behavior, our simulations reveal some differences in the polysaccharide conformations and surfaces which may impact antibody cross-reactivity between these two antigens. Importantly, we find significant conformational differences between the serotype a and b polysaccharides, indicating a potential lack of cross-reactivity that is corroborated by immunological data showing little recognition or killing between heterologous serotypes. These findings support the current development of a serotype a conjugate vaccine.
流感嗜血杆菌是导致脑膜炎疾病和死亡的主要原因,尤其是在幼儿中。自从针对最常见血清型(针对外荚膜多糖的有许可的结合疫苗)的流感嗜血杆菌 b 型疫苗问世以来,疾病的流行病学发生了变化,并且流感嗜血杆菌 a 型呈上升趋势,尤其是在北美原住民人群中。在这里,我们应用分子建模来探索血清型 a 和 b 荚膜多糖以及改良的水解抗性血清型 b 多糖的优先构象。尽管血清型 b 和改良的血清型 b 均具有相似的无规卷曲行为,但我们的模拟揭示了两种多糖构象和表面之间的一些差异,这些差异可能会影响两种抗原之间的抗体交叉反应性。重要的是,我们发现血清型 a 和 b 多糖之间存在显著的构象差异,表明缺乏交叉反应性,免疫学数据也证实了这一点,该数据表明异源血清型之间几乎没有识别或杀伤作用。这些发现支持当前针对血清型 a 的结合疫苗的开发。