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A viral protein antibiotic inhibits lipid II flippase activity

机译:病毒蛋白抗生素抑制脂质II唾液酶活性

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摘要

For bacteriophage infections, the cell walls of bacteria, consisting of a single highly polymeric molecule of peptidoglycan (PG), pose a major problem for the release of progeny virions. Phage lysis proteins that overcome this barrier can point the way to new antibacterial strategies1, especially small lytic single-stranded DNA (the microviruses) and RNA phages (the leviviruses) that effect host lysis using a single non-enzymatic protein2. Previously, the A2 protein of levivirus Qβ and the E proteinof the microvirus X174 were shown to be ‘protein antibiotics’ that inhibit the MurA and MraY steps of the PG synthesis pathway2,3,4. Here, we investigated the mechanism of action of an unrelated lysis protein, LysM, of the Escherichia coli levivirus M5. We show that LysM inhibits the translocation of the final lipid-linked PG precursor called lipid II across the cytoplasmic membrane by interfering with the activity of MurJ. The finding that LysM inhibits a distinct step in the PG synthesis pathway from the A2 and E proteins indicates that small phages, particularly the single-stranded RNA (ssRNA) leviviruses, have a previously unappreciated capacity for evolving novel inhibitors of PG biogenesis despite their limited coding potential.
机译:对于噬菌体感染,细菌的细胞壁,由单个高度聚合物的肽聚糖(PG)组成,对后代病毒粒子释放出一个主要问题。克服该屏障的噬菌体裂解蛋白可以指向新的抗菌策略1,特别是小裂解单链DNA(微血管)和RNA噬菌体(无病毒),其使用单一的非酶促蛋白2实现宿主裂解。以前,LevivirusQβ的A2蛋白和微血管X174的E蛋白质蛋白质被显示为“蛋白质抗生素”,其抑制PG合成途径2,3,4的静脉和MRAY步骤。在这里,我们研究了无关裂解蛋白,Lysm的作用机制,其大肠杆菌无菌尿虫病毒M5。我们表明Lysm通过干扰Murj的活性,抑制脂质连接的最终脂质连接的PG前体的易位称为脂质II的脂质II。 Lysm抑制来自A2和E蛋白的PG合成途径中不同步骤的发现表明,尽管它们有限,但仍具有先前未被未被未被过的PG生物抑制剂演化的PG生物抑制剂的小噬菌体的噬菌体,特别是较小的噬菌体编码潜力。

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  • 来源
    《Nature Microbiology》 |2017年第11期|共5页
  • 作者单位

    Center for Phage Technology Department of Biochemistry and Biophysics Texas A&

    M AgriLife Research Texas A&

    M University College Station TX 77843-2128 USA;

    Department of Microbiology and Immunobiology Harvard Medical School Boston MA 02215 USA;

    Department of Microbiology Ohio State University Columbus OH 43210 USA;

    Center for Phage Technology Department of Biochemistry and Biophysics Texas A&

    M AgriLife Research Texas A&

    M University College Station TX 77843-2128 USA;

    Department of Microbiology and Immunobiology Harvard Medical School Boston MA 02215 USA;

    Department of Microbiology Ohio State University Columbus OH 43210 USA;

    Department of Microbiology and Immunobiology Harvard Medical School Boston MA 02215 USA;

    Center for Phage Technology Department of Biochemistry and Biophysics Texas A&

    M AgriLife Research Texas A&

    M University College Station TX 77843-2128 USA;

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

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