Peng Daxin, Hu Wei-Gang, Choudhury Biswa P, Muszyński Artur, Carlson Russell W, Gu Xin-Xing
Vaccine Research Section, National Institute on Deafness and Other Communication Disorders, National Institutes of Health, Rockville, MD, USA.
FEBS J. 2007 Oct;274(20):5350-9. doi: 10.1111/j.1742-4658.2007.06060.x. Epub 2007 Sep 24.
Lipooligosaccharide (LOS), a major component of the outer membrane of Moraxella catarrhalis, consists of two major moieties: a lipid A and a core oligosaccharide (OS). The core OS can be dissected into a linker and three OS chains. To gain an insight into the biological activities of the LOS molecules of M. catarrhalis, we used a random transposon mutagenesis approach with an LOS specific monoclonal antibody to construct a serotype A O35Elgt3 LOS mutant. MALDI-TOF-MS of de-O-acylated LOS from the mutant and glycosyl composition, linkage, and NMR analysis of its OS indicated that the LOS contained a truncated core OS and consisted of a Glc-Kdo(2) (linker)-lipid A structure. Phenotypic analysis revealed that the mutant was similar to the wild-type strain in its growth rate, toxicity and susceptibility to hydrophobic reagents. However, the mutant was sensitive to bactericidal activity of normal human serum and had a reduced adherence to human epithelial cells. These data, combined with our previous data obtained from mutants which contained only lipid A or lacked LOS, suggest that the complete OS chain moiety of the LOS is important for serum resistance and adherence to epithelial cells, whereas the linker moiety is critical for maintenance of the outer membrane integrity and stability to preserve normal cell growth. Both the lipid A and linker moieties contribute to the LOS toxicity.
脂寡糖(LOS)是卡他莫拉菌外膜的主要成分,由两个主要部分组成:脂多糖A和核心寡糖(OS)。核心OS可分为连接区和三条OS链。为了深入了解卡他莫拉菌LOS分子的生物学活性,我们使用了一种随机转座子诱变方法,结合LOS特异性单克隆抗体构建了血清型A O35Elgt3 LOS突变体。对突变体去O-酰化LOS进行基质辅助激光解吸电离飞行时间质谱分析,以及对其OS进行糖基组成、连接分析和核磁共振分析,结果表明该LOS含有截短的核心OS,由Glc-Kdo(2)(连接区)-脂多糖A结构组成。表型分析显示,突变体在生长速率、毒性和对疏水试剂的敏感性方面与野生型菌株相似。然而,突变体对正常人血清的杀菌活性敏感,并且对人上皮细胞的黏附能力降低。这些数据,结合我们之前从仅含有脂多糖A或缺乏LOS的突变体中获得的数据,表明LOS完整的OS链部分对于血清抗性和对上皮细胞的黏附很重要,而连接区部分对于维持外膜完整性和稳定性以保持正常细胞生长至关重要。脂多糖A和连接区部分都对LOS毒性有贡献。