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Contributions of crust proteins to spore surface properties in Bacillus subtilis Bacillus subtilis

机译:壳蛋白在枯草芽孢杆菌枯草芽孢杆菌植物中孢子表面性质的贡献

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摘要

Summary Surface properties, such as adhesion and hydrophobicity, constrain dispersal of bacterial spores in the environment. In Bacillus subtilis , these properties are influenced by the outermost layer of the spore, the crust . Previous work has shown that two clusters, cotVWXYZ and cgeAB , encode the protein components of the crust. Here, we characterize the respective roles of these genes in surface properties using Bacterial Adherence to Hydrocarbons assays, negative staining of polysaccharides by India ink and Transmission Electron Microscopy. We showed that inactivation of crust genes caused increases in spore relative hydrophobicity, disrupted the spore polysaccharide layer, and impaired crust structure and attachment to the rest of the coat. We also found that cotO , previously identified for its role in outer coat formation, is necessary for proper encasement of the spore by the crust. In parallel, we conducted fluorescence microscopy experiments to determine the full network of genetic dependencies for subcellular localization of crust proteins. We determined that CotZ is required for the localization of most crust proteins, while CgeA is at the bottom of the genetic interaction hierarchy.
机译:发明内容表面性质,例如粘附和疏水性,约束环境中的细菌孢子的分散。在枯草芽孢杆菌中,这些性质受到孢子的最外层,地壳的影响。以前的工作表明,两个簇,CotVwxyz和CGEAB,编码了地壳的蛋白质成分。在这里,我们将这些基因在表面性质中的各自作用用来使用细菌粘附到烃测定,印度墨水和透射电子显微镜的多糖的负染色。我们表明壳基因的失活导致孢子相对疏水性的增加,破坏了孢子多糖层,并损害了地壳结构和附着在其余的涂层上。我们还发现,科托,先前确定其在外层被毛形成中的作用,有必要由地壳中的孢子的正确装箱。同时,我们进行了荧光显微镜实验,以确定壳蛋白亚细胞定位的遗传依赖性全网络。我们确定COTZ需要大多数地壳蛋白质的定位,而CGEA在遗传相互作用层次的底部。

著录项

  • 来源
    《Molecular Microbiology》 |2019年第3期|共19页
  • 作者单位

    Center for Genomics and Systems Biology Department of BiologyNew York UniversityNew York NY 10003;

    Department of Microbiology and Immunology Stritch School of MedicineLoyola University;

    Research Center for Micro‐Nano TechnologyHosei UniversityKoganei Tokyo Japan;

    Center for Genomics and Systems Biology Department of BiologyNew York UniversityNew York NY 10003;

    Department of Frontier BioscienceHosei UniversityKoganei Tokyo Japan;

    Center for Genomics and Systems Biology Department of BiologyNew York UniversityNew York NY 10003;

    Center for Genomics and Systems Biology Department of BiologyNew York UniversityNew York NY 10003;

    Center for Genomics and Systems Biology Department of BiologyNew York UniversityNew York NY 10003;

    Department of Microbiology and Immunology Stritch School of MedicineLoyola University;

    Research Center for Micro‐Nano TechnologyHosei UniversityKoganei Tokyo Japan;

    Center for Genomics and Systems Biology Department of BiologyNew York UniversityNew York NY 10003;

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