首页> 美国卫生研究院文献>Journal of Bacteriology >Agl16 a Thermophilic Glycosyltransferase Mediating the Last Step of N-Glycan Biosynthesis in the Thermoacidophilic Crenarchaeon Sulfolobus acidocaldarius
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Agl16 a Thermophilic Glycosyltransferase Mediating the Last Step of N-Glycan Biosynthesis in the Thermoacidophilic Crenarchaeon Sulfolobus acidocaldarius

机译:Agl16一种嗜热的糖基转移酶介导嗜热嗜酸克雷纳氏嗜盐菌Socolobus acidocaldarius中N-聚糖生物合成的最后一步

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摘要

Recently, the S-layer protein of Sulfolobus acidocaldarius was shown to be N-linked with a tribranched hexasaccharide, composed of Man2Glc1GlcNAc2 and a sulfated sugar called sulfoquinovose. To identify genes involved in the biosynthesis and attachment of this glycan, markerless in-frame deletions of genes coding for predicted glycosyltransferases were created. The successful deletion of agl16, coding for a glycosyltransferase, resulted in the S-layer protein and archaellins having reduced molecular weights, as visualized by Coomassie staining or immunoblotting. This analysis indicated a change in the N-glycan composition. Nano-liquid chromatography-tandem mass spectrometry (LC-MS/MS) analyses confirmed that the glycan of the S-layer protein from the agl16 deletion mutant was a pentasaccharide, which was missing a terminal hexose residue. High-performance liquid chromatography (HPLC) analyses of the hydrolyzed N-glycan indicated that the missing hexose is a glucose residue. A physiological characterization of the agl16 deletion mutant revealed a significant effect on the growth at elevated salt concentrations. At 300 mM NaCl, the doubling time of the Δagl16 mutant was increased 2-fold compared to that of the background strain. Furthermore, the incomplete glycan structure of the Δagl16 deletion strain affected the assembly and function of the archaellum, as exemplified by semisolid Gelrite plate analysis, in which the motility is decreased according to the N-glycan size.
机译:最近,显示出嗜盐球菌的S层蛋白与三支六糖N相连,三支六糖由Man2Glc1GlcNAc2和称为磺基基乌糖的硫酸化糖组成。为了鉴定参与该聚糖的生物合成和附着的基因,创建了编码预测的糖基转移酶的基因的无标记框内缺失。如考马斯染色或免疫印迹所见,成功缺失编码糖基转移酶的agl16导致S层蛋白和古菌素的分子量降低。该分析表明N-聚糖组成发生变化。纳米液相色谱-串联质谱(LC-MS / MS)分析证实,agl16缺失突变体的S层蛋白的聚糖是五糖,缺少末端己糖残基。水解的N-聚糖的高效液相色谱(HPLC)分析表明,丢失的己糖是葡萄糖残基。 agl16缺失突变体的生理特性揭示了盐浓度升高对生长的显着影响。在300 mM NaCl下,Δagl16突变体的倍增时间是背景菌株的两倍。此外,Δagl16缺失菌株的不完全聚糖结构影响古细菌的组装和功能,如半固态Gelrite平板分析所证明的那样,其中活力随N-聚糖大小而降低。

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