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与肺炎球菌19群发生交叉反应的不可分组链球菌的荚膜多糖。

Capsular polysaccharides of nongroupable streptococci that cross-react with pneumococcal group 19.

作者信息

Lee C J, Koizumi K, Henrichsen J, Perch B, Lin C S, Egan W

出版信息

J Immunol. 1984 Nov;133(5):2706-11.

PMID:6434634
Abstract

The cross-reactivity and chemical characterization of the nongroupable streptococcal and pneumococcal group 19 polysaccharides (PS) have been studied. Extensive cross-reactions were observed between capsular PSs of streptococcal strains 14636/74, 4907, 4731 and pneumococcal type 19F and 19A antisera. Streptococcal 14636/74 PS had an identical composition to that of pneumococcal 19F PS. Type 19F and 14636/74 PS were composed of equimolar amounts of rhamnose, glucose, N-acetyl mannosamine, and phosphorus. The capsular PS of strains 4731 and 4907 contained rhamnose, glucose, ribose, N-acetyl mannosamine, and N-acetyl glucosamine in different molar ratios. Extensive immunologic reactivity was observed between the 19F and 14636/74 PS, as determined by light scattering rate nephelometry, passive immune hemolysis, and precipitin reaction. There was an identity reaction by immunodiffusion between type 19F and 14636/74 PS when reacted with rabbit antiserum against either organism. Biochemical studies showed that strain 14636/74 was not a pneumococcus, because it was optochin resistant, was bile insoluble, did not possess the C-carbohydrate antigen common to all pneumococci, and produced neither pneumolysin nor IgA protease. Furthermore, it grew in comparatively simple media in contrast to the complex nutritional requirements of pneumococci. The 13C-NMR spectra of the 19F and 14636/74 PS were identical. These two capsular PS can, therefore, be considered identical.

摘要

对不可分组链球菌和肺炎球菌19型多糖(PS)的交叉反应性及化学特性进行了研究。在链球菌菌株14636/74、4907、4731的荚膜PS与肺炎球菌19F型和19A型抗血清之间观察到广泛的交叉反应。链球菌14636/74 PS的组成与肺炎球菌19F PS相同。19F型和14636/74 PS由等摩尔量的鼠李糖、葡萄糖、N-乙酰甘露糖胺和磷组成。菌株4731和4907的荚膜PS含有不同摩尔比的鼠李糖、葡萄糖、核糖、N-乙酰甘露糖胺和N-乙酰葡糖胺。通过光散射速率比浊法、被动免疫溶血和沉淀素反应测定,观察到19F和14636/74 PS之间有广泛的免疫反应性。当与针对任一菌株的兔抗血清反应时,19F型和14636/74 PS之间通过免疫扩散出现同一性反应。生化研究表明,菌株14636/74不是肺炎球菌,因为它对奥普托欣耐药、不溶于胆汁、不具有所有肺炎球菌共有的C碳水化合物抗原,且既不产生肺炎溶血素也不产生IgA蛋白酶。此外,与肺炎球菌复杂的营养需求相比,它能在相对简单的培养基中生长。19F和14636/74 PS的13C-NMR光谱相同。因此,这两种荚膜PS可被认为是相同的。

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