首页> 美国卫生研究院文献>The Journal of Experimental Medicine >Protein rib: a novel group B streptococcal cell surface protein that confers protective immunity and is expressed by most strains causing invasive infections
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Protein rib: a novel group B streptococcal cell surface protein that confers protective immunity and is expressed by most strains causing invasive infections

机译:蛋白质肋骨:一种新型的B组链球菌细胞表面蛋白具有保护性免疫力并在大多数引起侵袭性感染的菌株中表达

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摘要

The group B Streptococcus, an important cause of invasive infections in the neonate, is classified into four major serotypes (Ia, Ib, II, and III) based on the structure of the polysaccharide capsule. Since the capsule is a known virulence factor, it has been extensively studied, in particular in type III strains, which cause the majority of invasive infections. Two cell surface proteins, alpha and beta, have also been studied in detail since they confer protective immunity, but these proteins are usually not expressed by type III strains. We describe here a cell surface protein, designated protein Rib (resistance to proteases, immunity, group B), that confers protective immunity and is expressed by most strains of type III. Protein Rib was first identified as a distinct 95-kD protein in extracts of a type III strain, and was purified to homogeneity from that strain. Rabbit antiserum to protein Rib was used to demonstrate that it is expressed on the cell surface of 31 out of 33 type III strains, but only on 1 out of 25 strains representing the other three serotypes. Mouse protection tests showed that antiserum to protein Rib protects against lethal infection with three different strains expressing this antigen, including a strain representing a recently identified high virulence type III clone. Protein Rib is immunologically unrelated to the alpha and beta proteins, but shares several features with the alpha protein. Most importantly, the NH2-terminal amino acid sequences of the Rib and alpha proteins are identical at 6 out of 12 positions. In addition, both protein Rib and the alpha protein are relatively resistant to trypsin (and Rib is also resistant to pepsin) and both proteins vary greatly in size between different clinical isolates. Finally, both protein Rib and the alpha protein exhibit a regular ladderlike pattern in immunoblotting experiments, which may reflect a repetitive structure. Taken together, these data suggest that the Rib and alpha proteins are members of a family of proteins with related structure and function. Since protein Rib confers protective immunity, it may be valuable for the development of a protein vaccine against the group B Streptococcus, an encapsulated bacterium.
机译:B组链球菌是新生儿侵入性感染的重要原因,根据多糖胶囊的结构分为四种主要血清型(Ia,Ib,II和III)。由于胶囊是已知的毒力因子,因此已经对其进行了广泛的研究,特别是在引起大多数侵入性感染的III型菌株中。还已经详细研究了两种细胞表面蛋白,α和β,因为它们具有保护性免疫力,但是这些蛋白通常不会被III型菌株表达。我们在此描述一种细胞表面蛋白,称为蛋白Rib(对蛋白酶的抵抗力,免疫力,B组),可赋予保护性免疫力,并由大多数III型菌株表达。首先将Rib蛋白鉴定为III型菌株提取物中的独特95-kD蛋白,然后从该菌株中纯化至同质。兔抗Rib蛋白的血清被用于证明其在33种III型菌株中的31种细胞表面表达,但在代表其他三种血清型的25种菌株中仅1种在细胞表面表达。小鼠保护试验表明,针对Rib蛋白的抗血清可防止表达这种抗原的三种不同菌株(包括代表最近鉴定出的高毒力III型克隆的菌株)的致死性感染。蛋白质肋骨在免疫学上与α和β蛋白无关,但与α蛋白具有多个特征。最重要的是,Rib和α蛋白的NH2末端氨基酸序列在12个位置中的6个位置相同。此外,Rib蛋白和α蛋白都对胰蛋白酶具有相对抗性(Rib也对胃蛋白酶具有抗性),并且两种蛋白在不同临床分离株之间的大小差异很大。最后,蛋白Rib和α蛋白在免疫印迹实验中均显示规则的梯状图案,这可能反映出重复的结构。综合来看,这些数据表明Rib和α蛋白是具有相关结构和功能的蛋白家族的成员。由于蛋白质Rib赋予保护性免疫力,因此对于开发针对B型链球菌(一种封装细菌)的蛋白质疫苗可能具有重要的价值。

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