首页> 外文期刊>Journal of bacteriology >N-Glycosylation of Haloferax volcanii Flagellins Requires Known Agl Proteins and Is Essential for Biosynthesis of Stable Flagella
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N-Glycosylation of Haloferax volcanii Flagellins Requires Known Agl Proteins and Is Essential for Biosynthesis of Stable Flagella

机译:火山嗜盐菌鞭毛蛋白的N-糖基化需要已知的Agl蛋白,对于稳定鞭毛的生物合成必不可少

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N-glycosylation, a posttranslational modification required for the accurate folding and stability of many proteins, has been observed in organisms of all domains of life. Although the haloarchaeal S-layer glycoprotein was the first prokaryotic glycoprotein identified, little is known about the glycosylation of other haloarchaeal proteins. We demonstrate here that the glycosylation of Haloferax volcanii flagellins requires archaeal glycosylation (Agl) components involved in S-layer glycosylation and that the deletion of any Hfx. volcanii agl gene impairs its swimming motility to various extents. A comparison of proteins in CsCl density gradient centrifugation fractions from supernatants of wild-type Hfx. volcanii and deletion mutants lacking the oligosaccharyltransferase AglB suggests that when the Agl glycosylation pathway is disrupted, cells lack stable flagella, which purification studies indicate consist of a major flagellin, FlgA1, and a minor flagellin, FlgA2. Mass spectrometric analyses of FlgA1 confirm that its three predicted N-glycosylation sites are modified with covalently linked pentasaccharides having the same mass as that modifying its S-layer glycoprotein. Finally, the replacement of any of three predicted N-glycosylated asparagines of FlgA1 renders cells nonmotile, providing direct evidence for the first time that the N-glycosylation of archaeal flagellins is critical for motility. These results provide insight into the role that glycosylation plays in the assembly and function of Hfx. volcanii flagella and demonstrate that Hfx. volcanii flagellins are excellent reporter proteins for the study of haloarchaeal glycosylation processes.
机译:N-糖基化是许多蛋白质的精确折叠和稳定性所必需的翻译后修饰,已在生活所有领域的生物中观察到。尽管卤代古细菌S层糖蛋白是确定的第一个原核糖蛋白,但对其他卤代古细菌蛋白的糖基化了解甚少。我们在这里证明,Haloferax volcanii鞭毛蛋白的糖基化需要参与S层糖基化的古细菌糖基化(Agl)成分以及任何Hfx的缺失。火山 agl 基因在不同程度上削弱了其游泳运动能力。来自野生型Hfx上清液的CsCl密度梯度离心分离级分中蛋白质的比较。缺少寡糖基转移酶AglB的火山和缺失突变体表明,当Ag1糖基化途径被破坏时,细胞缺乏稳定的鞭毛,纯化研究表明,鞭毛蛋白主要由鞭毛蛋白FlgA1和次要鞭毛蛋白FlgA2组成。 FlgA1的质谱分析证实,其三个预测的N-糖基化位点被共价连接的五糖修饰,其质量与修饰其S层糖蛋白的质量相同。最后,替换FlgA1的三种预测的N-糖基化天冬酰胺中的任何一种都会使细胞失去运动能力,这首次提供直接证据证明古细菌鞭毛蛋白的N-糖基化对于运动至关重要。这些结果提供了对糖基化在Hfx的组装和功能中发挥作用的见解。 volcanii鞭毛并证明Hfx。火山鞭毛蛋白是研究卤代古细菌糖基化过程的优秀报道蛋白。

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