首页> 外文期刊>Molecular & cellular proteomics: MCP >Characterization of Protein Glycosylation in Francisella tularensis subsp. holarctica IDENTIFICATION OF A NOVEL GLYCOSYLATED LIPOPROTEIN REQUIRED FOR VIRULENCE
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Characterization of Protein Glycosylation in Francisella tularensis subsp. holarctica IDENTIFICATION OF A NOVEL GLYCOSYLATED LIPOPROTEIN REQUIRED FOR VIRULENCE

机译:图拉弗朗西斯菌亚种中蛋白质糖基化的表征。毒力所需的新型糖基化脂蛋白的果糖鉴定

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摘要

FTH_0069 is a previously uncharacterized strongly immu-noreactive protein that has been proposed to be a novel virulence factor in Francisella tularensis. Here, the glycan structure modifying two C-terminal peptides of FTH_0069 was identified utilizing high resolution, high mass accuracy mass spectrometry, combined with in-source CID tandem MS experiments. The glycan observed at m/z 1156 was determined to be a hexasaccharide, consisting of two hexo-ses, three N-acetylhexosamines, and an unknown mono-saccharide containing a phosphate group. The monosac-charide sequence of the glycan is tentatively proposed as X-P-HexNAc-HexNAc-Hex-Hex-HexNAc, where X denotes the unknown monosaccharide. The glycan is identical to that of DsbA glycoprotein, as well as to one of the multiple glycan structures modifying the type IV pilin PilA, suggesting a common biosynthetic pathway for the protein modification. Here, we demonstrate that the glycosylation of FTH_0069, DsbA, and PilA was affected in an isogenic mutant with a disrupted wbtDEF gene cluster encoding O-an-tigen synthesis and in a mutant with a deleted pglA gene encoding pilin oligosaccharyltransferase PglA. Based on our findings, we propose that PglA is involved in both pilin and general F. tularensis protein glycosylation, and we further suggest an inter-relationship between the O-antigen and the glycan synthesis in the early steps in their biosynthetic pathways.
机译:FTH_0069是一种以前未鉴定的强免疫反应蛋白,已被提出是土拉弗朗西斯菌中的一种新型毒力因子。在此,结合高分辨率CID串联MS实验,利用高分辨率,高质量准确度质谱法鉴定了修饰FTH_0069的两个C末端肽的聚糖结构。在m / z 1156处观察到的聚糖被确定为六糖,由两个己糖,三个N-乙酰己糖胺和一个未知的含磷酸基的单糖组成。聚糖的单糖序列暂定为X-P-HexNAc-HexNAc-Hex-Hex-HexNAc,其中X表示未知的单糖。该聚糖与DsbA糖蛋白的聚糖相同,并且与修饰IV型菌毛蛋白PilA的多个聚糖结构之一相同,表明该蛋白修饰的常见生物合成途径。在这里,我们证明FTH_0069,DsbA和PilA的糖基化在等位基因突变体中受到影响,该突变体具有编码O-抗原合成的wbtDEF基因簇,并且在突变体中具有缺失的pill寡糖基转移酶PglA基因。根据我们的发现,我们建议PglA参与菌毛蛋白和普通F. tularensis蛋白糖基化,并且我们进一步建议O抗原和聚糖合成的生物合成途径的早期阶段之间存在相互关系。

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