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首页> 外文期刊>Clinical and diagnostic laboratory immunology >Distribution of immunogenic epitopes on the two major immunodominant proteins (rOmpA and rOmpB) of Rickettsia conorii among the other rickettsiae of the spotted fever group.
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Distribution of immunogenic epitopes on the two major immunodominant proteins (rOmpA and rOmpB) of Rickettsia conorii among the other rickettsiae of the spotted fever group.

机译:斑点热组其他立克次体中立克次氏体的两个主要免疫优势蛋白(rOmpA和rOmpB)上的免疫原性表位分布。

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摘要

Forty-four monoclonal antibodies were raised against strain Seven, the type strain of Rickettsia conorii. Of these 44 monoclonal antibodies, 13, 27, and 4 were demonstrated to be directed against the 116-kDa protein (rOmpA), the 124-kDa protein (rOmpB), and lipopolysaccharide-like antigen, respectively. The antiprotein monoclonal antibodies were found to be directed against 29 distinct epitopes, which were located on the two major immunodominant proteins discussed above. Further analysis showed that strain-specific epitopes were located on the rOmpA protein and species- and subgroup-specific epitopes were located on the rOmpB protein. R. conorii Manuel, Indian tick typhus rickettsia, and Kenya tick typhus rickettsia also possessed all 29 epitopes, whereas the other rickettsiae of the spotted fever group (SFG) expressed between 3 and 25 epitopes, with the exception of Rickettsia helvetica, R. akari, and R. australis which did not possess any epitopes. Additional analyses by Western immunoblotting confirmed that the epitopes shared among the SFG rickettsiae were located on the same two high-molecular-mass proteins as on R. conorii. However, although epitopes on the R. conorii rOmpB protein were expressed on the rOmpB proteins of most other SFG rickettsiae, some were found on the rOmpA proteins of R. aeschlimannii, R. rickettsii, and R. rhipicephali. Both proteins possessing the common epitopes were found to have different sizes in the SFG rickettsial species. The different distributions of common epitopes in the SFG rickettsiae were also used to build a taxonomic dendrogram, which demonstrated that all the R. conorii strains formed a relatively independent cluster within the SFG rickettsiae and was generally consistent with previously proposed taxonomies.
机译:产生了四株抗柯氏立克次体菌株七的单克隆抗体。在这44种单克隆抗体中,分别有13、27和4种分别针对116-kDa蛋白(rOmpA),124-kDa蛋白(rOmpB)和脂多糖样抗原。发现抗蛋白单克隆抗体针对29种不同的表位,它们位于上文讨论的两种主要的免疫显性蛋白上。进一步的分析表明,菌株特异性表位位于rOmpA蛋白上,物种和亚组特异性表位位于rOmpB蛋白上。 R. conorii Manuel,印度壁虱伤寒立克次体和肯尼亚壁虱伤寒立克次体也拥有全部29个表位,而斑点热组(SFG)的其他立克次体表达3至25个表位,除了立克次体helvetica,R。akari和不具有任何表位的南澳罗非鱼。 Western免疫印迹法进行的其他分析证实,SFG立克次体之间共有的表位位于与Conorii R.相同的两种高分子蛋白质上。但是,尽管在大多数其他SFG立克次体的rOmpB蛋白上表达了Conorii rOmpB蛋白的表位,但在R. aeschlimannii,R。rickettsii和rhipicephali的rOmpA蛋白上发现了一些抗原决定簇。发现具有共同表位的两种蛋白质在SFG立克次体物种中具有不同的大小。 SFG立克次体中常见表位的不同分布也用于构建分类树状图,这表明所有Conorii菌株都在SFG立克次体内形成了相对独立的簇,并且通常与先前提出的分类法一致。

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