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Identification of genes involved in the acetamidino group modification of the flagellin N-Linked glycan of Methanococcus maripaludis

机译:鉴定涉及马氏甲烷球菌鞭毛蛋白N-连接聚糖的乙酰氨基修饰的基因

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摘要

N-linked glycosylation of protein is a posttranslational modification found in all three domains of life. The flagellin proteins of the archaeon Methanococcus maripaludis are known to be modified with an N-linked tetrasaccharide consisting of N-acetylgalactosamine (GalNAc), a diacetylated glucuronic acid (GlcNAc3NAc), an acetylated and acetamidino-modified mannuronic acid with a substituted threonine group (ManNAc3NAmA6Thr), and a novel terminal sugar residue [(5S)-2-acetamido-2,4-dideoxy-5-O-methyl-\u3b1-L-erythro-hexos-5-ulo-1,5-pyranose]. To identify genes involved in biosynthesis of the component sugars of this glycan, three genes, mmp1081, mmp1082, and mmp1083, were targeted for in-frame deletion, based on their annotation and proximity to glycosyltransferase genes known to be involved in assembly of the glycan. Mutants carrying a deletion in any of these three genes remained flagellated and motile. A strain with a deletion of mmp1081 had lower-molecular-mass flagellins in Western blots. Mass spectrometry of purified flagella revealed a truncated glycan with the terminal sugar absent and the threonine residue and the acetamidino group missing from the third sugar. No glycan modification was seen in either the \u394mmp1082 or \u394mmp1083 mutant grown in complex Balch III medium. However, a glycan identical to the \u394mmp1081 glycan was observed when the \u394mmp1082 or \u394mmp1083 mutant was grown under ammonia-limited conditions. We hypothesize that MMP1082 generates ammonia and tunnels it through MMP1083 to MMP1081, which acts as the amidotransferase, modifying the third sugar residue of the M. maripaludis glycan with the acetamidino group. \ua9 2012, American Society for Microbiology.
机译:蛋白质的N-联糖基化是在生活的所有三个域中发现的翻译后修饰。已知古细菌甲烷甲烷球菌的鞭毛蛋白被N-连接的四糖修饰,该四糖由N-乙酰基半乳糖胺(GalNAc),二乙酰化葡糖醛酸(GlcNAc3NAc),乙酰化和乙酰胺基修饰的甘露糖醛酸(具有取代的苏氨酸基团)组成( ManNAc3NAmA6Thr)和一个新的末端糖残基[(5S)-2-acetamido-2,4-dideoxy-5-O-methyl- \ u3b1-L-erythro-hexos-5-ulo-1,5-pyranose]。为了鉴定参与该聚糖成分糖生物合成的基因,基于它们的注释和与已知参与聚糖组装的糖基转移酶基因的接近性,将三个基因mmp1081,mmp1082和mmp1083定位为框内缺失。在这三个基因的任何一个中带有缺失的突变体仍然是鞭毛状的和能动的。缺失mmp1081的菌株在蛋白质印迹中具有较低分子量的鞭毛蛋白。纯化鞭毛的质谱分析显示,末端糖不存在,第三糖中缺少苏氨酸残基和乙酰氨基,因此截短了聚糖。在复杂Balch III培养基中生长的\ u394mmp1082或\ u394mmp1083突变体中均未观察到聚糖修饰。但是,当\ u394mmp1082或\ u394mmp1083突变体在氨限制的条件下生长时,观察到与\ u394mmp1081聚糖相同的聚糖。我们假设MMP1082产生氨并将其通过MMP1083隧穿到MMP1081,后者充当酰胺基转移酶,用乙酰氨基修饰maripaludis聚糖的第三个糖残基。 \ ua9 2012,美国微生物学会。

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