首页> 美国卫生研究院文献>Infection and Immunity >The Glycan Moieties and the N-Terminal Polypeptide Backbone of a Fimbria-Associated Adhesin Fap1 Play Distinct Roles in the Biofilm Development of Streptococcus parasanguinis
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The Glycan Moieties and the N-Terminal Polypeptide Backbone of a Fimbria-Associated Adhesin Fap1 Play Distinct Roles in the Biofilm Development of Streptococcus parasanguinis

机译:菌毛相关黏附素Fap1的聚糖部分和N末端多肽骨干在副链球菌生物膜发育中发挥不同的作用。

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摘要

Fap1, a fimbria-associated glycoprotein, is essential for biofilm formation of Streptococcus parasanguinis and mediates bacterial attachment to saliva-coated hydroxylapatite, an in vitro tooth model (E. H. Froeliger and P. M. Fives-Taylor, Infect. Immun. 69:2512-2519, 2001; H. Wu and P. M. Fives-Taylor, Mol. Microbiol. 34:1070-1081, 1999; H. Wu et al., Mol. Microbiol. 28:487-500, 1998). Fap1 belongs to a growing family of high-molecular-weight serine-rich proteins found in streptococcal and staphylococcal species and possesses two serine-rich repeat regions. The glycan moiety of Fap1 appears to be O linked within the repeat regions (A. E. Stephenson et al., Mol. Microbiol. 43:147-157, 2002). In the present study, we identified a gene cluster immediately upstream of fap1 that encodes three putative glycosyltransferases and one nucleotide-sugar synthetase-like protein. Inactivation of one glycosyltransferase gene galT2 abolished the expression of two glycan epitopes; however, it did not alter bacterial ability to adhere to both SHA and saliva-conditioned biofilm surfaces. In contrast, the biofilms formed by the galT2 mutant were shallow and had a 70% decrease in biomass accumulation, suggesting that these glycan moieties mediated by GalT2 are not required for the initial adhesion but are important for biofilm formation. A recombinant N-terminal Fap1 polypeptide was shown to interact with a 53-kDa salivary protein and block and displace bacterial attachment, further demonstrating the role of the Fap1 polypeptide in bacterial adhesion. Taken together, these results suggest that Fap1 glycosylation plays an important role in bacterial biofilm formation, whereas the nonglycosylated Fap1 peptide mediates bacterial initial attachment during the process of biofilm formation.
机译:Fap1是一种与菌毛相关的糖蛋白,对于副血链球菌的生物膜形成至关重要,并能介导细菌附着到唾液包被的羟磷灰石(一种体外牙齿模型)上(EH Froeliger和PM Fives-Taylor,Infect。Immun。69:2512-2519, 2001; H. Wu和PM Fives-Taylor,Mol。Microbiol。34:1070-1081,1999; H. Wu等,Mol.Microbiol。28:487-500,1998)。 Fap1属于在链球菌和葡萄球菌物种中发现的高分子量富含丝氨酸的蛋白质的增长家族,并具有两个富含丝氨酸的重复区域。 Fap1的聚糖部分似乎在重复区域内是O连接的(A. E. Stephenson等人,Mol。Microbiol。43:147-157,2002)。在本研究中,我们鉴定了一个位于fap1上游的基因簇,该簇编码三个推定的糖基转移酶和一个核苷酸糖合成酶样蛋白。一个糖基转移酶基因galT2的失活消除了两个聚糖表位的表达。然而,它并没有改变细菌粘附于SHA和唾液调节的生物膜表面的能力。相反,由galT2突变体形成的生物膜很浅,生物量积累减少了70%,这表明由GalT2介导的这些聚糖部分对于初始粘附不是必需的,但对生物膜的形成很重要。重组N末端Fap1多肽与53 kDa唾液蛋白相互作用,阻断并置换细菌附着,进一步证明Fap1多肽在细菌粘附中的作用。综上所述,这些结果表明,Fap1糖基化在细菌生物膜形成中起重要作用,而未糖基化的Fap1肽在生物膜形成过程中介导细菌的初始附着。

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