首页> 外文期刊>Carbohydrate research >Low structural diversity of the O-polysaccharides of Photorhabdus asymbiotica subspp. asymbiotica and australis and their similarity to the O-polysaccharides of taxonomically remote bacteria including Francisella tularensis
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Low structural diversity of the O-polysaccharides of Photorhabdus asymbiotica subspp. asymbiotica and australis and their similarity to the O-polysaccharides of taxonomically remote bacteria including Francisella tularensis

机译:拟生无性光子菌Os-多糖的低结构多样性。不对称细菌和南澳大利亚人及其与分类学上较远的细菌(包括弗朗西斯菌)的O-多糖的相似性

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The O-polysaccharides were isolated from the lipopolysaccharides of emerging human pathogens Photorhabdus asymbiotica subsp. asymbiotica US-86 and US-87 and subsp. australis AU36, AU46, and AU92. Studies by sugar analysis and ~1H and ~(13)C NMR spectroscopy before and after O-deacetylation showed that the O-polysaccharide structures are essentially identical within, and only slightly different between, the subspecies. The following structures of the repeating units of the O-polysaccharides were established: →3)-β-D-Quip4NGlyFo-(1→4)-α-D-GalpNAcAN3Ac- (1→4)-α-D-GalpNAcA3R-(1→3)-α-D-QuipNAc-(1→ where GalNAcA stands for 2-acetamido-2-deoxygalacturonic acid, GalNAcAN for amide of GalNAcA, QuiNAc for 2-acetamido-2,6-dideoxyglucose, and Qui4NGlyFo for 4,6-dideoxy-4-(N-formylglycyl)aminoglucose; R = Ac in subsp. asymbiotica or H in subsp. australis. The structures established resemble those of a number of taxonomically remote bacteria including Francisella tularensis (Vinogradov, E. V.; Shashkov, A. S.; Knirel, Y. A.; Kochetkov, N. K.; Tochtamysheva, N. V.; Averin, S. P.; Goncharova, O. V.; Khlebnikov, V. S. Carbohydr. Res. 1991, 214, 289-297), which differs in (i) the presence of a formyl group on Qui4N rather than the N-formylglycyl group, (ii) the mode of the linkage between the repeating units (β1→2 vs α1→3), (iii) amidation of both GalNAcA residues rather than one residue, and iv) the lack of O-acetylation.
机译:O-多糖是从新兴的人类病原体光生无形亚种(Photorhabdus asymbiotica)亚种的脂多糖中分离出来的。非对称性US-86和US-87及其子版本。 AU36,AU46和AU92。在O-去乙酰化之前和之后通过糖分析和〜1H和〜(13)C NMR光谱进行的研究表明,O-多糖结构在亚种内基本相同,而在亚种之间仅稍有不同。建立了O-多糖的重复单元的以下结构:→3)-β-D-Quip4NGlyFo-(1→4)-α-D-GalpNAcAN3Ac-(1→4)-α-D-GalpNAcA3R-( 1→3)-α-D-QuipNAc-(1→其中GalNAcA代表2-乙酰氨基-2-脱氧半乳糖醛酸,GalNAcAN代表GalNAcA的酰胺,QuiNAc代表2-乙酰氨基-2,6-二脱氧葡萄糖,Qui4NGlyFo代表4, 6-二脱氧-4-(N-甲酰基甘氨酰)氨基葡萄糖; R =不对称亚种中的Ac或澳大利亚亚种中的H.所建立的结构类似于包括弗朗西斯菌的许多分类学上较远的细菌(Vinogradov,EV; Shashkov,AS ; Knirel,YA; Kochetkov,NK;内华达州Tochtamysheva; Averin,SP; Goncharova,OV; Khlebnikov,VS Carbohydr。Res。1991,214,289-297),其不同之处在于(i)在基团上存在甲酰基Qui4N而不是N-甲酰基甘氨酰基团;(ii)重复单元之间的连接方式(β1→2与α1→3),(iii)两个GalNAcA残基而不是一个残基酰胺化,以及iv)缺少邻乙酰基信息。

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