首页> 外文期刊>Antonie van Leeuwenhoek: Journal of Microbiology and serology >Identification of a gene involved in the biosynthesis pathway of the terminal sugar of the archaellin N-linked tetrasaccharide in Methanococcus maripaludis
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Identification of a gene involved in the biosynthesis pathway of the terminal sugar of the archaellin N-linked tetrasaccharide in Methanococcus maripaludis

机译:鉴定涉及海产甲烷球菌的古细菌素N连接的四糖末端糖的生物合成途径的基因

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In Methanococcus maripaludis, the three archaellins which comprise the archaellum are modified at multiple sites with an N-linked tetrasaccharide with the structure of Sug-4-beta-ManNAc3NAmA6Thr-4-beta-GlcNAc3NAcA-3-beta-GalNAc, where Sug is a unique sugar (5S)-2-acetamido-2,4-dideoxy-5-O-methyl-l-erythro-hexos-5-ulo-1,5-pyranose, so far found exclusively in this species. In this study, a six-gene cluster mmp1089-1094, neighboring one of the genomic regions already known to contain genes involved with the archaellin N-glycosylation pathway, was examined for its potential involvement in the archaellin N-glycosylation or sugar biosynthesis pathway. The co-transcription of these six genes was demonstrated by RT-PCR. Mutants carrying an in-frame deletion in mmp1090, mmp1091 or mmp1092 were successfully generated. The Delta mmp1090 deletion mutant was archaellated when examined by electron microscopy and mass spectrometry analysis of purified archaella showed that the archaellins were modified with a truncated N-glycan in which the terminal sugar residue and the threonine linked to the third sugar residue were missing. Both gene annotation and bioinformatic analyses indicate that MMP1090 is a UDP-glucose 4-epimerase, suggesting that the unique terminal sugar of the archaellin N-glycan might be synthesised from UDP-glucose or UDP-N-acetylglucosamine with an essential early step in synthesis catalysed by MMP1090. In contrast, no detectable phenotype related to archaellin glycosylation was observed in mutants deleted for either mmp1091 or mmp1092 while attempts to delete mmp1089, mmp1093 and mmp1094 were unsuccessful. Based on its demonstrated involvement in the archaellin N-glycosylation pathway, we designated mmp1090 as aglW.
机译:在马氏甲烷球菌中,构成古细菌的三个古菌素在多个位点被N-连接的四糖修饰,结构为Sug-4-beta-ManNAc3NAmA6Thr-4-beta-GlcNAc3NAcA-3-beta-GalNAc,其中Sug为迄今为止,仅在该物种中发现了独特的糖(5S)-2-乙酰氨基-2,4-二脱氧-5-O-甲基-1-赤-己基-5-氟-1,5-吡喃糖。在这项研究中,检查了一个六基因簇mmp1089-1094,该基因簇邻近已知包含与古细菌N-糖基化途径有关的基因的基因组区域之一,它是否参与了古细菌N-糖基化或糖生物合成途径。通过RT-PCR证实了这六个基因的共转录。成功产生了携带mmp1090,mmp1091或mmp1092框内缺失的突变体。通过电子显微镜检查和纯化的古细菌的质谱分析表明,Delta mmp1090缺失突变体是古细菌,表明古细菌蛋白被截短的N-聚糖修饰,其中末端糖残基和与第三个糖残基连接的苏氨酸缺失。基因注释和生物信息学分析均表明MMP1090是UDP-葡萄糖4-表异构酶,这表明古细菌N-聚糖的独特末端糖可能是由UDP-葡萄糖或UDP-N-乙酰氨基葡糖合成的,是合成中必不可少的早期步骤。由MMP1090催化。相反,在针对mmp1091或mmp1092删除的突变体中,未观察到与古细菌糖基化相关的可检测表型,而删除mmp1089,mmp1093和mmp1094的尝试均未成功。基于其在古细菌N-糖基化途径中的参与,我们将mmp1090命名为aglW。

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