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首页> 外文期刊>Glycobiology >Structures of two novel, serologically nonrelated core oligosaccharides of Yokenella regensburgei lipopolysaccharides differingn only by a single hexose substitution
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Structures of two novel, serologically nonrelated core oligosaccharides of Yokenella regensburgei lipopolysaccharides differingn only by a single hexose substitution

机译:两种新的,与血清学无关的核心重组雷氏菌脂多糖核心寡糖的结构差异仅在于单个己糖取代

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摘要

Immunochemical analysis of the Yokenella regensburgei lipopolysaccharides (LPS) indicated the presence of the core oligosaccharide-related immunotypes among the investigated strains. The structure of the core oligosaccharide segment of the Y. regensburgei LPS has been investigated using chemical methods, mass spectrometry, and 1H, 13C NMR spectroscopy. It was concluded that the core oligosaccharides of the strains PCM 2476 and PCM 2477 are composed of an undecasaccharide. The combined data revealed two immunotypes of the core oligosaccharide recognized by antibodies against the whole bacterial cells. The structural differences between the core oligosaccharides are limited to the outermost terminal hexopyranose residue. In the core oligosaccharide of the strain PCM 2476, it was identified as α-d-Glcp and in that of the strain PCM 2477 as α-d-Galp. This subtle difference between the glycoforms of the LPS core appeared to be essential for formation of the epitopes recognized by the specific antibodies directed against the Y. regensburgei whole bacterial cells. The oligosaccharides are not substituted by phosphate groups. Instead, the carboxyl groups of Kdo and galacturonic acid residues present in the core provide the negative charges. The undecasaccharides represent a novel core type of bacterial LPS, which is characteristic for Y. regensburgei.
机译:雷根斯堡氏小球菌脂多糖(LPS)的免疫化学分析表明,在所研究的菌株中存在核心寡糖相关的免疫型。使用化学方法,质谱和 1 H, 13 C NMR光谱研究了雷氏耶氏酵母LPS核心寡糖片段的结构。结论是,菌株PCM 2476和PCM 2477的核心寡糖由十一碳糖组成。合并的数据显示了针对整个细菌细胞的抗体识别的两种核心寡糖的免疫类型。核心寡糖之间的结构差异仅限于最外端的六吡喃糖残基。在菌株PCM 2476的核心寡糖中,将其鉴定为α-d-Glcp,在菌株PCM 2477中将其鉴定为α-d-Galp。 LPS核心的糖型之间的这种细微差异似乎对于形成由针对雷根斯堡氏菌整个细菌细胞的特异性抗体识别的表位至关重要。寡糖不被磷酸基团取代。相反,核心中存在的Kdo和半乳糖醛酸残基的羧基提供负电荷。十一碳糖代表细菌LPS的新型核心类型,这是雷根斯堡耶尔森氏菌的特征。

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  • 来源
    《Glycobiology》 |2010年第2期|p.207-214|共8页
  • 作者

    Czeslaw Lugowski;

  • 作者单位

    L. Hirszfeld Institute of Immunology and Experimental Therapy, Polish Academy of Sciences, @%@, Swedish University of Agricultural Sciences, @%@, University of Opole, @%@To whom correspondence should be addressed: Tel: @%@;

    Fax: @%@;

    e-mail:;

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