Nishiyama Keita, Ochiai Ayaka, Tsubokawa Daigo, Ishihara Kazuhiko, Yamamoto Yuji, Mukai Takao
Department of Animal Science, Kitasato University School of Veterinary Medicine, Towada, Aomori, Japan.
Department of Parasitology, Kitasato University School of Medicine, Sagamihara, Kanagawa, Japan.
PLoS One. 2013 Dec 31;8(12):e83703. doi: 10.1371/journal.pone.0083703. eCollection 2013.
We previously purified a putative sulfated-galactosylceramide (sulfatide)-binding protein with a molecular weight of 47 kDa from the cell surface of Lactobacillus reuteri JCM1081. The aim of this study was to identify the 47-kDa protein, examine its binding to sulfated glycolipids and mucins, and evaluate its role in bacterial adhesion to mucosal surfaces. By cloning and sequencing analysis, the 47-kDa protein was identified as elongation factor-Tu (EF-Tu). Adhesion properties were examined using 6 × Histidine-fused EF-Tu (His6-EF-Tu). Surface plasmon resonance analysis demonstrated pH-dependent binding of His6-EF-Tu to sulfated glycolipids, but not to neutral or sialylated glycolipids, suggesting that a sulfated galactose residue was responsible for EF-Tu binding. Furthermore, His6-EF-Tu was found to bind to porcine gastric mucin (PGM) by enzyme-linked immunosorbent assay. Binding was markedly reduced by sulfatase treatment of PGM and in the presence of acidic and desialylated oligosaccharide fractions containing sulfated carbohydrate residues prepared from PGM, demonstrating that sulfated carbohydrate moieties mediated binding. Histochemical staining revealed similar localization of His6-EF-Tu and high iron diamine staining in porcine mucosa. These results indicated that EF-Tu bound PGM via sulfated carbohydrate moieties. To characterize the contribution of EF-Tu to the interaction between bacterial cells and PGM, we tested whether anti-EF-Tu antibodies could inhibit the interaction. Binding of L. reuteri JCM1081 to PGM was significantly blocked in a concentration-dependent matter, demonstrating the involvement of EF-Tu in bacterial adhesion. In conclusion, the present results demonstrated, for the first time, that EF-Tu bound sulfated carbohydrate moieties of sulfated glycolipids and sulfomucin, thereby promoting adhesion of L. reuteri to mucosal surfaces.
我们之前从罗伊氏乳杆菌JCM1081的细胞表面纯化出一种分子量为47 kDa的假定硫酸化半乳糖神经酰胺(硫脂)结合蛋白。本研究的目的是鉴定这种47 kDa的蛋白,检测其与硫酸化糖脂和粘蛋白的结合情况,并评估其在细菌黏附于黏膜表面中的作用。通过克隆和测序分析,该47 kDa的蛋白被鉴定为延伸因子-Tu(EF-Tu)。使用6×组氨酸融合的EF-Tu(His6-EF-Tu)检测黏附特性。表面等离子体共振分析表明His6-EF-Tu与硫酸化糖脂的结合具有pH依赖性,但与中性或唾液酸化糖脂无结合,这表明硫酸化半乳糖残基是EF-Tu结合的原因。此外,通过酶联免疫吸附测定发现His6-EF-Tu与猪胃粘蛋白(PGM)结合。用硫酸酯酶处理PGM以及在含有从PGM制备的硫酸化碳水化合物残基的酸性和去唾液酸化寡糖组分存在的情况下,结合明显减少,表明硫酸化碳水化合物部分介导了结合。组织化学染色显示His6-EF-Tu和高铁二胺染色在猪黏膜中的定位相似。这些结果表明EF-Tu通过硫酸化碳水化合物部分与PGM结合。为了表征EF-Tu对细菌细胞与PGM之间相互作用的贡献,我们测试了抗EF-Tu抗体是否能抑制这种相互作用。罗伊氏乳杆菌JCM1081与PGM的结合在浓度依赖性方面被显著阻断,表明EF-Tu参与了细菌黏附。总之,目前的结果首次表明EF-Tu与硫酸化糖脂和硫粘蛋白的硫酸化碳水化合物部分结合,从而促进罗伊氏乳杆菌黏附于黏膜表面。