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阐明大肠杆菌 O93 的 O-抗原结构并鉴定其生物合成基因。

Elucidation of the O-antigen structure of Escherichia coli O93 and characterization of its biosynthetic genes.

机构信息

Department of Organic Chemistry, Arrhenius Laboratory, Stockholm University, S-106 91 Stockholm, Sweden.

Department of Biochemistry and Biophysics, Arrhenius Laboratory, Stockholm University, S-106 91 Stockholm, Sweden.

出版信息

Glycobiology. 2023 May 17;33(4):289-300. doi: 10.1093/glycob/cwac069.

Abstract

The structure of the O-antigen from the international reference strain Escherichia coli O93:-:H16 has been determined. A nonrandom modal chain-length distribution was observed for the lipopolysaccharide, a pattern which is typical when long O-specific polysaccharides are expressed. By a combination of (i) bioinformatics information on the gene cluster related to O-antigen synthesis including putative function on glycosyl transferases, (ii) the magnitude of NMR coupling constants of anomeric protons, and (iii) unassigned 2D 1H, 13C-HSQC, and 1H,1H-TOCSY NMR spectra it was possible to efficiently elucidate the structure of the carbohydrate polymer in an automated fashion using the computer program CASPER. The polysaccharide also carries O-acetyl groups and their locations were determined by 2D NMR experiments showing that ~½ of the population was 2,6-di-O-acetylated, ~¼ was 2-O-acetylated, whereas ~¼ did not carry O-acetyl group(s) in the 3-O-substituted mannosyl residue of the repeating unit. The structure of the tetrasaccharide repeating unit of the O-antigen is given by: →2)-β-d-Manp-(1→3)-β-d-Manp2Ac6Ac-(1→4)-β-d-GlcpA-(1→3)-α-d-GlcpNAc-(1→, which should also be the biological repeating unit and it shares structural elements with capsular polysaccharides from E. coli K84 and K50. The structure of the acidic O-specific polysaccharide from Cellulophaga baltica strain NN015840T differs to that of the O-antigen from E. coli O93 by lacking the O-acetyl group at O6 of the O-acetylated mannosyl residue.

摘要

国际参考菌株大肠杆菌 O93:-:H16 的 O-抗原结构已经确定。观察到脂多糖的非随机模态链长分布,这是表达长 O-特异性多糖时的典型模式。通过(i)与 O-抗原合成相关的基因簇的生物信息学信息,包括糖基转移酶的假定功能,(ii)糖基偶合常数的大小,以及(iii)未分配的 2D 1H、13C-HSQC 和 1H、1H-TOCSY NMR 谱,使用计算机程序 CASPER 可以有效地自动阐明碳水化合物聚合物的结构。多糖还携带 O-乙酰基,其位置通过 2D NMR 实验确定,结果表明约一半的群体为 2,6-二-O-乙酰化,约四分之一为 2-O-乙酰化,而在重复单元的 3-O-取代的甘露糖残基中,约四分之一不携带 O-乙酰基。O-抗原的四糖重复单元的结构为:→2)-β-d-Manp-(1→3)-β-d-Manp2Ac6Ac-(1→4)-β-d-GlcpA-(1→3)-α-d-GlcpNAc-(1→,这也应该是生物重复单元,它与大肠杆菌 K84 和 K50 的荚膜多糖具有结构元素。与大肠杆菌 O93 的 O-抗原不同,来自 Cellulophaga baltica 菌株 NN015840T 的酸性 O-特异性多糖结构缺少 O-乙酰化的甘露糖残基 O6 上的 O-乙酰基。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da88/10191223/069af8ab8f00/cwac069f1.jpg

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