Department of Pathology, University of Alabama at Birmingham, Birmingham, AL, USA.
J Bacteriol. 2011 Oct;193(19):5271-8. doi: 10.1128/JB.05034-11. Epub 2011 Jul 29.
Despite the emerging impact of serogroup 11 serotypes in Streptococcus pneumoniae epidemiology, the structures of serogroup 11 capsule types have not been fully elucidated, particularly the locations of O-acetyl substitutions. Here, we report the complete structures of the serotype 11B, 11C, and 11F polysaccharides and a revision to the serotype 11A capsular polysaccharide using nuclear magnetic resonance (NMR). All structures shared a linear, tetrasaccharide backbone with a pendant phosphopolyalcohol. Three of four saccharides are conserved in all serotypes. The individual serotype capsules differed in the identity of one saccharide, the pendant phosphopolyalcohol, and the O-acetylation pattern. Though the assigned locations of O-acetate substitutions in this study differed from those of previous reports, our findings were corroborated with strong correlations to serology and genetics. We examined the binding of serotyping sera to serogroup 11 polysaccharides by using flow cytometry and an inhibition-type enzyme-linked immunosorbent assay (ELISA) and found that de-O-acetylation of capsular polysaccharides by mild hydrolysis decreases its immunoreactivity, supporting the crucial role of O-acetylation in the antigenicity of these polysaccharides. Due to strong correlations between polysaccharide structures and capsule biosynthesis genes, we were able to assign target substrates for the O-acetyltransferases encoded by wcwC, wcwR, wcwT, and wcjE. We identified antigenic determinants for serogroup 11 serotyping sera and highlight the idea that conventional serotyping methods are not capable of recognizing all putative variants of S. pneumoniae serogroup 11.
尽管 11 血清型群在肺炎链球菌流行病学中的影响不断显现,但 11 血清型群荚膜类型的结构尚未完全阐明,尤其是 O-乙酰化取代的位置。在这里,我们使用核磁共振(NMR)报道了 11B、11C 和 11F 多糖的完整结构以及 11A 荚膜多糖的修订结构。所有结构都具有线性四糖骨架和一个侧链膦多醇。四个糖中,有三个在所有血清型中都保守。四个血清型的荚膜在一个糖的种类、侧链膦多醇和 O-乙酰化模式上存在差异。尽管本研究中 O-乙酰化取代的指定位置与之前的报告不同,但我们的发现与血清学和遗传学具有很强的相关性。我们通过流式细胞术和抑制型酶联免疫吸附试验(ELISA)研究了血清学分型血清与 11 血清群多糖的结合情况,发现荚膜多糖的脱 O-乙酰化轻度水解降低了其免疫原性,这支持了 O-乙酰化在这些多糖的抗原性中的关键作用。由于多糖结构与荚膜生物合成基因之间存在很强的相关性,我们能够为 wcwC、wcwR、wcwT 和 wcjE 编码的 O-乙酰基转移酶分配靶底物。我们确定了 11 血清群血清学分型血清的抗原决定簇,并强调了传统的血清学分型方法无法识别所有可能的肺炎链球菌 11 血清群变体的想法。