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首页> 外文期刊>Molecular Microbiology >Identification of the lipopolysaccharide O‐antigen biosynthesis priming enzyme and the O‐antigen ligase in Myxococcus xanthus Myxococcus xanthus : critical role of LPS O‐antigen in motility and development
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Identification of the lipopolysaccharide O‐antigen biosynthesis priming enzyme and the O‐antigen ligase in Myxococcus xanthus Myxococcus xanthus : critical role of LPS O‐antigen in motility and development

机译:脂多糖O-抗原生物合成诱导酶的鉴定Xanthus myxococcus Xanthus中的o-antigen连接酶:LPS O-antigen在运动和发育中的关键作用

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摘要

Summary Myxococcus xanthus is a model bacterium to study social behavior. At the cellular level, the different social behaviors of M. xanthus involve extensive cell–cell contacts. Here, we used bioinformatics, genetics, heterologous expression and biochemical experiments to identify and characterize the key enzymes in M. xanthus implicated in O‐antigen and lipopolysaccharide (LPS) biosynthesis and examined the role of LPS O‐antigen in M. xanthus social behaviors. We identified WbaP Mx (MXAN_2922) as the polyisoprenyl ‐ phosphate hexose‐1‐phosphate transferase responsible for priming O‐antigen synthesis. In heterologous expression experiments, WbaP Mx complemented a Salmonella enterica mutant lacking the endogenous WbaP that primes O‐antigen synthesis, indicating that WbaP Mx transfers galactose‐1‐P to undecaprenyl‐phosphate. We also identified WaaL Mx (MXAN_2919), as the O‐antigen ligase that joins O‐antigen to lipid A‐core. Our data also support the previous suggestion that Wzm Mx (MXAN_4622) and Wzt Mx (MXAN_4623) form the Wzm/Wzt ABC transporter. We show that mutations that block different steps in LPS O‐antigen synthesis can cause pleiotropic phenotypes. Also, using a wbaP Mx deletion mutant, we revisited the role of LPS O‐antigen and demonstrate that it is important for gliding motility, conditionally important for type IV pili‐dependent motility and required to complete the developmental program leading to the formation of spore‐filled fruiting bodies.
机译:发明内容Myxococcus Xanthus是一种研究社会行为的模型细菌。在细胞水平,Xanthus的不同社会行为涉及广泛的细胞 - 细胞接触。在这里,我们使用生物信息学,遗传学,异源表达和生化实验以鉴定和表征的关键酶在M.在O-抗原和脂多糖(LPS)的生物合成球菌牵连并检测LPS的作用O-抗原在黄色粘球菌的社会行为。我们鉴定了WBAP MX(MXAN_2922)作为负载用于启动O-抗原合成的聚异戊二烯 - 磷酸己烷 - 1-磷酸转移酶。在异源表达实验中,WBAP MX补充了缺乏缺乏对抗原合成的内源WBAP的沙门氏菌肠突变体,表明WBAP MX将半乳糖-1-P转移到未赤皂基磷酸盐中。我们还识别了WAAL MX(MXAN_2919),作为将O-抗原加入脂质A芯的O-抗原连接酶。我们的数据还支持以前的建议,即WZM MX(MXAN_4622)和WZT MX(MXAN_4623)形成WZM / WZT ABC运输车。我们表明,阻断LPS O-抗原合成中不同步骤的突变会导致抗脂肪表型。此外,使用WBAP MX缺失突变体,我们重新判断了LPS O-antigen的作用,并证明了对IV型依赖运动的滑动运动,有条件重要的,并且需要完成导致孢子形成的发展方案。 - 水果体。

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  • 来源
    《Molecular Microbiology》 |2019年第4期|共21页
  • 作者单位

    Department of EcophysiologyMax Planck Institute for Terrestrial MicrobiologyKarl‐von‐Frisch Str. 10;

    Wellcome‐Wolfson Institute for Experimental MedicineQueen's University BelfastBelfast BT9 7BL UK;

    Department of EcophysiologyMax Planck Institute for Terrestrial MicrobiologyKarl‐von‐Frisch Str. 10;

    Wellcome‐Wolfson Institute for Experimental MedicineQueen's University BelfastBelfast BT9 7BL UK;

    Department of EcophysiologyMax Planck Institute for Terrestrial MicrobiologyKarl‐von‐Frisch Str. 10;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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