Summary Membrane Microdomain Disassembly Inhibits MRSA Antibiotic Resistance
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Membrane Microdomain Disassembly Inhibits MRSA Antibiotic Resistance

机译:膜微米瘤拆卸抑制MRSA抗生素抗性

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SummaryA number of bacterial cell processes are confined functional membrane microdomains (FMMs), structurally and functionally similar to lipid rafts of eukaryotic cells. How bacteria organize these intricate platforms and what their biological significance is remain important questions. Using the pathogen methicillin-resistantStaphylococcus aureus(MRSA), we show here that membrane-carotenoid interaction with the scaffold protein flotillin leads to FMM formation, which can be visualized using super-resolution array tomography. These membrane platforms accumulate multimeric protein complexes, for which flotillin facilitates efficient oligomerization. One of these proteins is PBP2a, responsible for penicillin resistance in MRSA. Flotillin mutants are defective in PBP2a oligomerization. Perturbation of FMM assembly using available drugs interferes with PBP2a oligomerization and disables MRSA penicillin resistancein?vitroandin?vivo, resulting in MRSA infections that are susceptible to penicillin treatment. Our study demonstrates that bacteria possess sophisticated cell organization programs and defines alternative therapies to fight multidrug-resistant pathogens using conventional antibiotics.Graphical AbstractDisplay Omitted展开▼
机译:<![cdata [ 摘要 许多细菌细胞过程是限制功能膜微瘤(FMMS),在结构上和功能上类似于真核细胞的脂质筏。细菌如何组织这些复杂的平台以及他们的生物学意义仍然是重要的问题。使用病原体甲氧基硅蛋白抗性金黄色葡萄球菌(MRSA),我们展示了与支架蛋白絮状蛋白的膜 - 类胡萝卜素相互作用导致FMM形成,这可以使用超分辨率阵列可视化断层扫描。这些膜平台积累了多聚体蛋白质复合物,絮状虫促进了有效的低聚。其中一种蛋白质是PBP2A,负责MRSA的青霉素抗性。 Flotillin突变体在PBP2A寡聚化中有缺陷。使用可用药物的FMM组件的扰动干扰PBP2A寡聚化,并禁用MRSA青霉素抗性 IN?体外>斜体>和在β体内,导致MRSA感染这易于青霉素治疗。我们的研究表明,细菌具有复杂的细胞组织计划,并定义使用常规抗生素对抗多药病原体的替代疗法。 图形抽象 显示省略

著录项

  • 来源
    《Cell》 |2017年第6期|共15页
  • 作者单位

    National Centre for Biotechnology Spanish National Research Council (CNB-CSIC) 28049 Madrid Spain;

    Research Centre for Infectious Diseases (ZINF) University of Würzburg 97080 Würzburg Germany;

    National Centre for Biotechnology Spanish National Research Council (CNB-CSIC) 28049 Madrid Spain;

    Julius-von-Sachs-Institute Biocenter Pharmaceutical Biology University of Würzburg 97082 Würzburg Germany;

    Research Centre for Infectious Diseases (ZINF) University of Würzburg 97080 Würzburg Germany;

    Research Centre for Infectious Diseases (ZINF) University of Würzburg 97080 Würzburg Germany;

    Research Centre for Infectious Diseases (ZINF) University of Würzburg 97080 Würzburg Germany;

    Research Centre for Infectious Diseases (ZINF) University of Würzburg 97080 Würzburg Germany;

    Division of Electron Microscopy Biocenter University of Würzburg 97074 Würzburg Germany;

    Division of Electron Microscopy Biocenter University of Würzburg 97074 Würzburg Germany;

    National Centre for Biotechnology Spanish National Research Council (CNB-CSIC) 28049 Madrid Spain;

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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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