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金黄色葡萄球菌纽曼菌株中Eap的插入失活导致葡萄球菌与成纤维细胞的结合减少。

Insertional inactivation of Eap in Staphylococcus aureus strain Newman confers reduced staphylococcal binding to fibroblasts.

作者信息

Hussain Muzaffar, Haggar Axana, Heilmann Christine, Peters Georg, Flock Jan-Ingmar, Herrmann Mathias

机构信息

Institute of Medical Microbiology, University of Muenster Hospital, D-48129 Muenster, Germany.

出版信息

Infect Immun. 2002 Jun;70(6):2933-40. doi: 10.1128/IAI.70.6.2933-2940.2002.

Abstract

To initiate invasive infection, Staphylococcus aureus must adhere to host substrates, such as the extracellular matrix or eukaryotic cells, by virtue of different surface proteins (adhesins). Recently, we identified a 60-kDa cell-secreted extracellular adherence protein (Eap) of S. aureus strain Newman with broad-spectrum binding characteristics (M. Palma, A. Haggar, and J. I. Flock, J. Bacteriol. 181:2840-2845, 1999), and we have molecularly confirmed Eap to be an analogue of the previously identified major histocompatibility complex class II analog protein (Map) (M. Hussain, K. Becker, C. von Eiff, G. Peter, and M. Herrmann, Clin. Diagn. Lab. Immunol. 8:1281-1286, 2001). Previous analyses of the Eap/Map function performed with purified protein did not allow dissection of its precise role in the complex situation of the staphylococcal whole cell presenting several secreted and wall-bound adhesins. Therefore, the role of Eap was investigated by constructing a stable eap::ermB deletion in strain Newman and by complementation of the mutant. Patterns of extracted cell surface proteins analyzed both by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and by Western ligand assays with various adhesive matrix molecules clearly confirmed the absence of Eap in the mutant. However, binding and adhesion tests using whole staphylococcal cells demonstrated that both the parent and mutant strains bound equally well to fibronectin- and fibrinogen-coated surfaces, possibly due to their recognition by other staphylococcal adhesins. Furthermore, Eap mediated staphylococcal agglutination of both wild-type and mutant cells. In contrast, the mutant adhered to a significantly lesser extent to cultured fibroblasts (P < 0.001) than did the wild type, while adherence was restorable upon complementation. Furthermore, adherence to both epithelial cells (P < 0.05) and fibroblasts (not significant) could be blocked with antibodies against Eap, whereas preimmune serum was not active. In conclusion, Eap may contribute to pathogenicity by promoting adhesion of whole staphylococcal cells to complex eukaryotic substrates.

摘要

为引发侵袭性感染,金黄色葡萄球菌必须借助不同的表面蛋白(黏附素)黏附于宿主底物,如细胞外基质或真核细胞。最近,我们鉴定出金黄色葡萄球菌纽曼菌株的一种60 kDa细胞分泌型细胞外黏附蛋白(Eap),其具有广谱结合特性(M. 帕尔马、A. 哈加尔和J. I. 弗洛克,《细菌学杂志》181:2840 - 2845,1999年),并且我们已通过分子手段证实Eap是先前鉴定的主要组织相容性复合体II类类似蛋白(Map)的类似物(M. 侯赛因、K. 贝克尔、C. 冯·艾夫、G. 彼得和M. 赫尔曼,《临床诊断实验室免疫学》8:1281 - 1286,2001年)。先前用纯化蛋白对Eap/Map功能进行的分析无法剖析其在呈现多种分泌型和细胞壁结合型黏附素的葡萄球菌全细胞复杂情况下的确切作用。因此,通过在纽曼菌株中构建稳定的eap::ermB缺失突变体并对该突变体进行互补,研究了Eap的作用。通过十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳以及用各种黏附性基质分子进行的Western配体分析对提取的细胞表面蛋白模式进行分析,清楚地证实了突变体中不存在Eap。然而,使用全葡萄球菌细胞进行的结合和黏附试验表明,亲本菌株和突变体菌株与纤连蛋白和纤维蛋白原包被的表面结合能力相当,这可能是由于它们被其他葡萄球菌黏附素识别。此外,Eap介导野生型和突变体细胞的葡萄球菌凝集。相比之下,突变体与培养的成纤维细胞的黏附程度明显低于野生型(P < 0.001),而互补后黏附能力得以恢复。此外,针对Eap的抗体可阻断对上皮细胞(P < 0.05)和成纤维细胞(无显著差异)的黏附,而免疫前血清则无此作用。总之,Eap可能通过促进全葡萄球菌细胞与复杂真核底物的黏附而有助于致病性。

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