首页> 外文期刊>Molecular Microbiology >Identification of the Wzx flippase, Wzy polymerase and sugar‐modifying enzymes for spore coat polysaccharide biosynthesis in Myxococcus xanthus Myxococcus xanthus
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Identification of the Wzx flippase, Wzy polymerase and sugar‐modifying enzymes for spore coat polysaccharide biosynthesis in Myxococcus xanthus Myxococcus xanthus

机译:麦克芹虫Xanthus myxococccus Xanthus鉴定WZX絮状酶,WZY聚合酶和糖改性酶的孢子壳多糖生物合成

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摘要

Abstract The rod‐shaped cells of Myxococcus xanthus, a Gram‐negative deltaproteobacterium, differentiate to environmentally resistant spores upon starvation or chemical stress. The environmental resistance depends on a spore coat polysaccharide that is synthesised by the ExoA‐I proteins, some of which are part of a Wzx/Wzy‐dependent pathway for polysaccharide synthesis and export; however, key components of this pathway have remained unidentified. Here, we identify and characterise two additional loci encoding proteins with homology to enzymes involved in polysaccharide synthesis and export, as well as sugar modification and show that six of the proteins encoded by these loci are essential for the formation of environmentally resistant spores. Our data support that MXAN_3260, renamed ExoM and MXAN_3026, renamed ExoJ, are the Wzx flippase and Wzy polymerase, respectively, responsible for translocation and polymerisation of the repeat unit of the spore coat polysaccharide. Moreover, we provide evidence that three glycosyltransferases (MXAN_3027/ExoK, MXAN_3262/ExoO and MXAN_3263/ExoP) and a polysaccharide deacetylase (MXAN_3259/ExoL) are important for formation of the intact spore coat, while ExoE is the polyisoprenyl‐phosphate hexose‐1‐phosphate transferase responsible for initiating repeat unit synthesis, likely by transferring N ‐acetylgalactosamine‐1‐P to undecaprenyl‐phosphate. Together, our data generate a more complete model of the Exo pathway for spore coat polysaccharide biosynthesis and export.
机译:摘要紫胶尾黄瓜,革兰阴性Deltaproteobacterium的杆状细胞分化为饥饿或化学胁迫的环境抵抗孢子。环境抗性取决于由exoa-i蛋白合成的孢子涂层多糖,其中一些是WZX / WZY依赖性途径的多糖合成和出口的一部分;然而,该途径的关键部件仍未识别。在此,我们鉴定并表征了两种具有同源性的蛋白质与参与多糖合成和出口的酶,以及糖改性,并且表明这些基因座编码的六种蛋白质对于形成环保孢子是必不可少的。我们的数据支持,重命名为EXOJ的MXAN_3260,重命名的EXOJ,是WZX唾液酸酯和WZY聚合酶,其负责孢子壳多糖的重复单元的易位和聚合。此外,我们提供了三种糖基转移酶(MXAN_3027 / EXOK,MXAN_3262 / EXOO和MXAN_3263 / EXOP)和多糖脱乙酰化酶(MXAN_3259 / EXOL)对于形成完整的孢子涂层是重要的,而EXOE是聚异戊二烯基 - 磷酸己酮己酮,则是重要的 - 磷酸盐转移酶负责启动重复单元合成,可能通过将N-乙酰乙醛胺-1-p转移到未赤皂基磷酸酯中。我们的数据在一起产生了更完整的孢子壳多糖生物合成和出口途径模型。

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