N. D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Moscow, Russian Federation.
S. N. Winogradsky Institute of Microbiology, Federal Research Centre "Fundamentals of Biotechnology", Russian Academy of Sciences, Moscow, Russian Federation.
Int J Biol Macromol. 2019 Mar 1;124:389-395. doi: 10.1016/j.ijbiomac.2018.11.149. Epub 2018 Nov 15.
Escherichia coli F17 isolated from horse feces was studied in respect to the O antigen (O polysaccharide) structure and genetics. The lipopolysaccharide was isolated by phenol-water extraction of bacterial cells and cleaved by mild acid hydrolysis to yield the O polysaccharide, which was studied by sugar analysis and selective solvolysis with CFCOH along with one- and two-dimensional H and C NMR spectroscopy. The O polysaccharide was found to have a branched pentasaccharide repeat (O-unit) containing one residue each of d-galactose, d-mannose, l-rhamnose, d-glucuronic acid, and N-acetyl-d-glucosamine; about 2/3 units bear a side-chain glucose residue. To our knowledge, the F17 O-polysaccharide structure established is unique among known bacterial polysaccharide structures. The O-antigen gene cluster of E. coli F17 between the conserved genes galF and gnd was sequenced and found to be 99% identical to that of E. coli 102,755 assigned to a novel OgN8 genotype (A. Iguchi, S. Iyoda, K. Seto, H. Nishii, M. Ohnishi, H. Mekata, Y. Ogura, T. Hayashi, Front. Microbiol. 7 (2016) 765). Genes in the cluster were annotated taking into account the F17 O-polysaccharide structure. The data obtained confirm that E. coli F17 and E. coli strains belonging to the OgN8 genotype can be considered as a candidate to a new E. coli O-serogroup. The O antigen of this novel type was demonstrated to make for an effective shield protecting the intimate outer membrane surface of bacteria from direct interaction with bacteriophages.
从马粪便中分离到的大肠杆菌 F17 在 O 抗原(O 多糖)结构和遗传学方面进行了研究。通过细菌细胞的酚-水提取分离出脂多糖,并通过温和酸水解裂解得到 O 多糖,通过糖分析和 CFCOH 的选择性溶剂解以及一维和二维 H 和 C NMR 光谱对其进行研究。发现 O 多糖具有支化五糖重复(O 单元),每个单元含有一个 d-半乳糖、d-甘露糖、l-鼠李糖、d-葡萄糖醛酸和 N-乙酰-d-葡萄糖胺;约 2/3 的单元带有侧链葡萄糖残基。据我们所知,建立的 F17 O-多糖结构在已知的细菌多糖结构中是独特的。大肠杆菌 F17 的 O-抗原基因簇位于保守基因 galF 和 gnd 之间,测序并发现与大肠杆菌 102,755 相同,分配给一个新的 OgN8 基因型(A. Iguchi,S. Iyoda,K. Seto,H. Nishii,M. Ohnishi,H. Mekata,Y. Ogura,T. Hayashi,Front. Microbiol. 7(2016)765)。考虑到 F17 O-多糖结构,对簇中的基因进行了注释。获得的数据证实,大肠杆菌 F17 和属于 OgN8 基因型的大肠杆菌菌株可以被认为是一个新的大肠杆菌 O-血清群的候选物。这种新型的 O 抗原被证明是一种有效的盾牌,可以保护细菌的外膜表面免受噬菌体的直接相互作用。