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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 A_2 protein of levivirus Q|l and the E protein of the microvirus q>X174 were shown to be 'protein antibiotics' that inhibit the MurA and MraY steps of the PG synthesis pathway2-4. 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,抑血Q1174的左病毒Q | L和E蛋白的A_2蛋白显示为“蛋白质抗生素”,其抑制PG合成途径2-4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。

著录项

  • 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;

    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 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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