Edwards Katie J, Allen Simon, Gibson Bradford W, Campagnari Anthony A
Department of Microbiology, State University of New York at Buffalo, NY 14214, USA.
J Bacteriol. 2005 May;187(9):2939-47. doi: 10.1128/JB.187.9.2939-2947.2005.
Moraxella catarrhalis isolates express lipooligosaccharide (LOS) molecules on their surface, which share epitopes similar to that of the Neisseria and Haemophilus species. These common LOS epitopes have been implicated in various steps of pathogenesis for the different organisms. In this study, a cluster of three LOS glycosyltransferase genes (lgt) were identified in M. catarrhalis 7169, a strain that produces a serotype B LOS. Mutants in these glycosyltransferase genes were constructed, and the resulting LOS phenotypes were consistent with varying degrees of truncation compared to wild-type LOS. The LOS structures of each lgt mutant were no longer detected by a monoclonal antibody (MAb 4G5) specific to a highly conserved terminal epitope nor by a monoclonal antibody (MAb 3F7) specific to the serotype B LOS side chain. Mass spectrometry of the LOS glycoforms assembled by two of these lgt mutants indicated that lgt1 encodes an alpha(1-2) glucosyltransferase and the lgt2 encodes a beta(1-4) galactosyltransferase. However, these structural studies could not delineate the function for lgt3. Therefore, M. catarrhalis lgt3 was introduced into a defined beta(1-4) glucosyltransferase Haemophilus ducreyi 35000glu- mutant in trans, and monoclonal antibody analysis confirmed that Lgt3 complemented the LOS defect. These data suggest that lgt3 encodes a glucosyltransferase involved in the addition of a beta(1-4)-linked glucose to the inner core. Furthermore, we conclude that this enzymatic step is essential for the assembly of the complete LOS glycoform expressed by M. catarrhalis 7169.
卡他莫拉菌分离株在其表面表达脂寡糖(LOS)分子,这些分子具有与奈瑟菌属和嗜血杆菌属相似的表位。这些常见的LOS表位与不同生物体发病机制的各个步骤有关。在本研究中,在产生B型LOS的卡他莫拉菌7169中鉴定出一组三个LOS糖基转移酶基因(lgt)。构建了这些糖基转移酶基因的突变体,与野生型LOS相比,所得LOS表型与不同程度的截短一致。针对高度保守的末端表位的单克隆抗体(MAb 4G5)或针对B型LOS侧链的单克隆抗体(MAb 3F7)均未检测到每个lgt突变体的LOS结构。对其中两个lgt突变体组装的LOS糖型进行质谱分析表明,lgt1编码α(1-2)葡糖基转移酶,lgt2编码β(1-4)半乳糖基转移酶。然而,这些结构研究无法确定lgt3的功能。因此,将卡他莫拉菌lgt3反式导入明确的β(1-4)葡糖基转移酶杜克雷嗜血杆菌35000glu-突变体中,单克隆抗体分析证实Lgt3弥补了LOS缺陷。这些数据表明,lgt3编码一种参与向内核添加β(1-4)连接葡萄糖的葡糖基转移酶。此外,我们得出结论,这一酶促步骤对于卡他莫拉菌7169表达的完整LOS糖型的组装至关重要。