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首页> 外文期刊>Microbes and infection >Amoebal endosymbiont Neochlamydia protects host amoebae against Legionella pneumophila infection by preventing Legionella entry
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Amoebal endosymbiont Neochlamydia protects host amoebae against Legionella pneumophila infection by preventing Legionella entry

机译:Amoebal endosymbiont新氧化芽通过预防军团菌入口保护Hearionella Pneumophila感染保护宿主Amoebae

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摘要

Acanthamoeba isolated from environmental soil harbors the obligate intracellular symbiont Neochlamydia, which has a critical role in host amoebal defense against Legionella pneumophila infection. Here, by using morphological analysis with confocal laser scanning fluorescence microscopy and transmission electron microscopy, proteome analyses with two-dimensional fluorescence difference gel electrophoresis (2D-DIGE) and liquid chromatographyemass spectrometry (LC/MS), and transcriptome analysis with DNA microarray, we explored the mechanism by which the Neochlamydia affected this defense. We observed that when rare uptake did occur, the symbiotic amoebae allowed Legionella to grow normally. However, the symbiotic amoebae had severely reduced uptake of Legionella when compared with the aposymbiotic amoebae. Also, in contrast to amoebae carrying the endosymbiont, the actin cytoskeleton was significantly disrupted by Legionella infection in aposymbiotic amoebae. Furthermore, despite Legionella exposure, there was little change in Neochlamydia gene expression. Taken together, we concluded that the endosymbiont, Neochlamydia prevents Legionella entry to the host amoeba, resulting in the host defense against Legionella infection. (C) 2018 Institut Pasteur. Published by Elsevier Masson SAS. All rights reserved.
机译:从环境土壤中孤立的Acanthamoeba Harbors incregarelulary symbiont Neochlamydia,这在寄主Amoebal防御中具有关键作用,对抗军团菌肺炎感染。这里,通过使用与共聚焦激光扫描荧光显微镜和透射电子显微镜的形态学分析,蛋白质组分析二维荧光差凝胶电泳(2D-Dige)和液相色谱emass光谱(LC / MS),以及DNA微阵列的转录组分析,我们探索了新氧化物影响这种防守的机制。我们观察到,当发生罕见的摄取时,共生的amoebae允许军团菌正常生长。然而,与亚脱蛋白Amoebae相比,共生的Amoebae严重降低了军团菌的摄取。此外,与携带endosymbiont的Amoebae相反,actin细胞骨架在亚非生物amoebae中的军团菌感染显着破坏。此外,尽管军团国曝光,但新月形酵母的基因表达几乎没有变化。我们总结起来,我们得出结论,新芽,新氧化尼迪亚硫酮可防止军团菌进入寄主阿布巴,导致对军团菌感染的宿主防御。 (c)2018年Institut Pasteur。由Elsevier Masson SA出版。版权所有。

著录项

  • 来源
    《Microbes and infection》 |2018年第4期|共9页
  • 作者单位

    Hokkaido Univ Fac Hlth Sci Dept Med Lab Sci Kita Ku North 12 West 5 Nishi 5 Kita 12 Jo Sapporo;

    Hokkaido Univ Fac Hlth Sci Dept Med Lab Sci Kita Ku North 12 West 5 Nishi 5 Kita 12 Jo Sapporo;

    Hokkaido Univ Fac Hlth Sci Dept Med Lab Sci Kita Ku North 12 West 5 Nishi 5 Kita 12 Jo Sapporo;

    Hokkaido Univ Fac Hlth Sci Dept Med Lab Sci Kita Ku North 12 West 5 Nishi 5 Kita 12 Jo Sapporo;

    Juntendo Univ Grad Sch Med Div Biomed Imaging Res Bunkyo Ku 2-1-1 Hongo Tokyo 1138421 Japan;

    Hokkaido Univ Fac Hlth Sci Dept Med Lab Sci Kita Ku North 12 West 5 Nishi 5 Kita 12 Jo Sapporo;

    Tokyo Univ Sci RIKADAI Fac Sci Dept Liberal Arts Lab Biol Kagurazaka 1-3 Tokyo 1628601 Japan;

    Univ Shizuoka Sch Pharmaceut Sci Lab Microbiol &

    Immunol Shizuoka 4228526 Japan;

    Gifu Univ Sch Med 1-1 Yanagido Gifu 5011193 Japan;

    Hokkaido Univ Fac Hlth Sci Dept Med Lab Sci Kita Ku North 12 West 5 Nishi 5 Kita 12 Jo Sapporo;

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

    Symbiosis; Neochlamydia; Legionella; Acanthamoeba; Amoebae; Defense;

    机译:共生;Neochlamydia;军团菌;Acanthamoeba;Amoebae;防守;

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