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戈登链球菌表面蛋白GspB和Hsa介导与血小板膜糖蛋白Ibalpha上唾液酸化碳水化合物表位的结合。

The Streptococcus gordonii surface proteins GspB and Hsa mediate binding to sialylated carbohydrate epitopes on the platelet membrane glycoprotein Ibalpha.

作者信息

Bensing Barbara A, López José A, Sullam Paul M

机构信息

Division of Infectious Diseases, Veterans Affairs Medical Center, University of California, San Francisco 94121, USA.

出版信息

Infect Immun. 2004 Nov;72(11):6528-37. doi: 10.1128/IAI.72.11.6528-6537.2004.

Abstract

Platelet binding by Streptococcus gordonii strain M99 is dependent on expression of the cell wall-anchored glycoprotein GspB. This large cell surface protein is exported from the M99 cytoplasm via a dedicated transport system that includes SecA2 and SecY2. GspB is highly similar to Hsa, a protein expressed by S. gordonii Challis that has been characterized as a sialic acid binding hemagglutinin. In this study, we compared the contribution of GspB and Hsa to the adherence of S. gordonii to selected glycoproteins. Our results indicate that GspB can mediate binding to a variety of sialylated glycoproteins. GspB facilitates binding to carbohydrates bearing sialic acid in either alpha(2-3) or alpha(2-6) linkages, with a slight preference for alpha(2-3) linkages. Furthermore, GspB readily mediates binding to sialic acid residues on immobilized glycocalicin, the extracellular portion of the platelet membrane glycoprotein (GP) Ibalpha (the ligand binding subunit of the platelet von Willebrand factor receptor complex GPIb-IX-V). Although Hsa is required for the binding of S. gordonii Challis to sialic acid, most of the Hsa expressed by Challis is retained in the cytoplasm. The deficiency in export is due, at least in part, to a nonsense mutation in secA2. Hsa export can be enhanced by complementation with secA2 from M99, which also results in significantly greater binding to sialylated glycoproteins, including glycocalicin. The combined results indicate that GspB and Hsa contribute similar binding capabilities to M99 and Challis, respectively, but there may be subtle differences in the preferred epitopes to which these adhesins bind.

摘要

戈登氏链球菌M99菌株与血小板的结合依赖于细胞壁锚定糖蛋白GspB的表达。这种大型细胞表面蛋白通过包括SecA2和SecY2的专用转运系统从M99细胞质中输出。GspB与Hsa高度相似,Hsa是戈登氏链球菌Challis菌株表达的一种蛋白,已被鉴定为唾液酸结合血凝素。在本研究中,我们比较了GspB和Hsa对戈登氏链球菌与选定糖蛋白黏附的贡献。我们的结果表明,GspB可以介导与多种唾液酸化糖蛋白的结合。GspB促进与以α(2-3)或α(2-6)键连接的含唾液酸碳水化合物的结合,对α(2-3)键连接略有偏好。此外,GspB很容易介导与固定化糖萼素上的唾液酸残基结合,糖萼素是血小板膜糖蛋白(GP)Ibalpha(血小板血管性血友病因子受体复合物GPIb-IX-V的配体结合亚基)的细胞外部分。虽然戈登氏链球菌Challis菌株与唾液酸的结合需要Hsa,但Challis菌株表达的大多数Hsa保留在细胞质中。输出缺陷至少部分归因于secA2中的无义突变。用M99的secA2互补可以增强Hsa的输出,这也导致与包括糖萼素在内的唾液酸化糖蛋白的结合显著增加。综合结果表明,GspB和Hsa分别对M99和Challis菌株贡献了相似的结合能力,但这些黏附素结合的优选表位可能存在细微差异。

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