首页> 外文OA文献 >A Conserved C-Terminal 13-Amino-Acid Motif of Gap1 Is Required for Gap1 Function and Necessary for the Biogenesis of a Serine-Rich Glycoprotein of Streptococcus parasanguinis▿
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A Conserved C-Terminal 13-Amino-Acid Motif of Gap1 Is Required for Gap1 Function and Necessary for the Biogenesis of a Serine-Rich Glycoprotein of Streptococcus parasanguinis▿

机译:Gap1功能需要一个保守的C端13氨基酸基序的Gap1,这对于副链球菌富含丝氨酸的糖蛋白的生物发生是必需的。

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摘要

Adhesion of Streptococcus parasanguinis to saliva-coated hydroxyapatite (SHA), an in vitro tooth model, is mediated by long peritrichous fimbriae. Fap1, a fimbria-associated serine-rich glycoprotein, is required for fimbrial assembly. Biogenesis of Fap1 is controlled by an 11-gene cluster that contains gly, nss, galT1 and -2, secY2, gap1 to -3, secA2, and gtf1 and -2. We had previously isolated a collection of nine nonadherent mutants using random chemical mutagenesis approaches. These mutants fail to adhere to the in vitro tooth model and to form fimbriae. In this report, we further characterized these randomly selected nonadherent mutants and classified them into three distinct groups. Two groups of genes were previously implicated in Fap1 biogenesis. One group has a mutation in a glycosyltransferase gene, gtf1, that is essential for the first step of Fap1 glycosylation, whereas the other group has defects in the fap1 structural gene. The third group mutant produces an incompletely glycosylated Fap1 and exhibits a mutant phenotype similar to that of a glycosylation-associated protein 1 (Gap1) mutant. Analysis of this new mutant revealed that a conserved C-terminal 13-amino-acid motif was missing in Gap1. Site-directed mutagenesis of a highly conserved amino acid tryptophan within this motif recapitulated the deletion phenotype, demonstrating the importance of the Gap1 C-terminal motif for Fap1 biogenesis. Furthermore, the C-terminal mutation does not affect Gap1-Gap3 protein-protein interaction, which has been shown to mediate Fap1 glycosylation, suggesting the C-terminal motif has a distinct function related to Fap1 biogenesis.
机译:副血链球菌对唾液包被的羟磷灰石(SHA)(一种体外牙齿模型)的粘附作用是由长的周生菌毛介导的。 Fap1是与纤维相关的富含丝氨酸的糖蛋白,是纤维组装所需的。 Fap1的生物发生由11个基因簇控制,该簇包含gly,nss,galT1和-2,secY2,gap1至-3,secA2和gtf1和-2。我们以前使用随机化学诱变方法分离了九个非粘附突变体。这些突变体不能坚持体外牙齿模型并形成菌毛。在本报告中,我们进一步表征了这些随机选择的非粘附突变体,并将其分为三个不同的组。两组基因先前与Fap1生物发生有关。一组在糖基转移酶基因gtf1中具有突变,这对于Fap1糖基化的第一步至关重要,而另一组在fap1结构基因中具有缺陷。第三组突变体产生不完全糖基化的Fap1,并表现出与糖基化相关蛋白1(Gap1)突变体相似的突变体表型。对该新突变体的分析表明,Gap1中缺少一个保守的C端13个氨基酸的基序。在此基序内高度保守的氨基酸色氨酸的定点诱变概括了缺失表型,表明了Gap1 C端基序对Fap1生物发生的重要性。此外,C末端突变不影响Gap1-Gap3蛋白质-蛋白质相互作用,这已显示出介导Fap1糖基化,表明C末端基序具有与Fap1生物发生有关的独特功能。

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