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Regulation of the flagellar motor in Bacillus subtilis .

机译:调节鞭毛运动在枯草芽孢杆菌。

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摘要

Bacteria exhibit many multicellular, complex behaviors such as motility and biofilm formation. Many motile bacteria in the environment exist as single cells that are propelled by rotating flagella and can also differentiate into aggregates that form a biofilm. Upon biofilm formation, cells transition and become non-motile while synthesizing an extracellular matrix. Here I used the model bacterial system Bacillus subtilis to study the transition from motile to non-motile cells in a biofilm. Using genetic, biochemistry, and cytology techniques, I was able to determine the mechanism of how a single, unique protein expressed by cells during biofilm formation is bifunctional and acts to inhibit motility as well as synthesize the extracellular matrix. I further explored the dynamics of flagellar assembly, number, function, and patterning and found the clutch protein localized to flagella, indicating the clutch protein directly acts at the flagellum to inhibit motility. The finding that a single protein inhibits motility during biofilm formation is informative for other bacterial systems. Understanding the transition between motile and non-motile cells is important to understanding biofilm formation and eradication. Once bacteria form a biofilm, it is extremely difficult to disrupt and therefore my findings have far reaching implications in not only bacterial function but also medicine and industry.
机译:细菌表现出许多多细胞的复杂行为,例如运动性和生物膜形成。环境中的许多运动细菌以单个细胞的形式存在,这些细菌通过旋转鞭毛而被推动,并且还可以分化成形成生物膜的聚集体。生物膜形成后,细胞在合成细胞外基质的同时过渡并变得不能运动。在这里,我使用了模型细菌系统枯草芽孢杆菌来研究生物膜中从能动细胞到非能动细胞的过渡。使用遗传,生物化学和细胞学技术,我能够确定生物膜形成过程中细胞表达的单个独特蛋白质是双功能的,并且具有抑制运动性以及合成细胞外基质的功能。我进一步研究了鞭毛组装,数量,功能和模式的动力学,发现离合蛋白位于鞭毛中,表明离合蛋白直接作用于鞭毛以抑制运动。单一蛋白质在生物膜形成过程中抑制运动的发现对于其他细菌系统是有益的。了解运动和非运动细胞之间的过渡对于理解生物膜的形成和根除很重要。细菌一旦形成生物膜,就很难破坏,因此我的发现不仅对细菌功能而且对医学和工业都有深远的影响。

著录项

  • 作者

    Guttenplan, Sarah B.;

  • 作者单位

    Indiana University.;

  • 授予单位 Indiana University.;
  • 学科 Biology Microbiology.;Biology Molecular.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 382 p.
  • 总页数 382
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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