Institute for Glycomics, Griffith University, Gold Coast, QLD 4222, Australia.
Research Centre for Infectious Diseases, Department of Molecular and Cellular Biology, University of Adelaide, Adelaide, 5005, Australia.
Sci Rep. 2017 Dec 19;7(1):17784. doi: 10.1038/s41598-017-17850-9.
Streptococcus pneumoniae is a leading cause of morbidity and mortality globally. The Pilus-1 proteins, RrgA, RrgB and RrgC of S. pneumoniae have been previously assessed for their role in infection, invasive disease and as possible vaccine candidates. In this study we have investigated the glycan binding repertoire of all three Pilus-1 proteins, identifying that the tip adhesin RrgA has the broadest glycan recognition of the three proteins, binding to maltose/cellobiose, α/β linked galactose and blood group A and H antigens. RrgB only bound mannose, while RrgC bound a subset of glycans also recognized by RrgA. Adherence of S. pneumoniae TIGR4 to epithelial cells was tested using four of the oligosaccharides identified through the glycan array analysis as competitive inhibitors. The blood group H trisaccharide provided the best blocking of S. pneumoniae TIGR4 adherence. Adherence is the first step in disease, and host glycoconjugates are a common target for many adhesins. This study has identified Pilus-1 proteins as new lectins involved in the targeting of host glycosylation by S. pneumoniae.
肺炎链球菌是全球发病率和死亡率的主要原因。肺炎链球菌的 P 菌毛-1 蛋白 RrgA、RrgB 和 RrgC 先前已被评估其在感染、侵袭性疾病中的作用以及作为可能的疫苗候选物。在这项研究中,我们研究了所有三种 P 菌毛-1 蛋白的聚糖结合谱,确定尖端粘附素 RrgA 对三种蛋白具有最广泛的聚糖识别,结合麦芽糖/纤维二糖、α/β 连接的半乳糖和血型 A 和 H 抗原。RrgB 仅结合甘露糖,而 RrgC 结合一组也被 RrgA 识别的聚糖。通过聚糖阵列分析鉴定的四种寡糖来测试肺炎链球菌 TIGR4 对上皮细胞的粘附。血型 H 三糖提供了对肺炎链球菌 TIGR4 粘附的最佳阻断。粘附是疾病的第一步,宿主糖缀合物是许多粘附素的常见靶标。这项研究确定了 P 菌毛-1 蛋白是肺炎链球菌靶向宿主糖基化的新凝集素。