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The gating of the bacterial mechanosensitive channel MscS reflects its function as a sensor of both crowding and lateral pressure as well as its role in osmoregulation.

机译:细菌机械敏感通道MscS的门控反映了其作为拥挤和侧向压力传感器的功能以及其在渗透压调节中的作用。

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摘要

The mechanosensitive channel MscS is a ubiquitous bacterial membrane valve that opens by increased tension in the event of osmotic down-shock, releasing small internal osmolytes and thus preventing the cell from excessive hydration and possible lysis. This osmolyte release is accompanied by a reduction of osmotic pressure and volume of the cell, which simultaneously increases crowding. The large catalogue of MscS homologs in both prokaryotes and eukaryotes makes the study of this channel enticing to the field of physical biochemistry.;Here are the results of three different studies, two of which focus on the gating of MscS in the presence of large osmolytes and amphipathic compounds and a third which describes the first electrophysiological examination of the inner membrane of the facultative pathogen Vibrio cholerae. The first study in Chapter 2 describes the sensitivity of gating transitions in MscS to large intracellular macromolecules. This sensitivity originates at the cytoplasmic cage domain and the perceived crowding alters the rate of opening, closing and inactivation. Chapter 3 details the utilization of MscS as a sensor for changes in the lateral pressure profile of native bilayers and how this technique can be used to resolve the potential of antibacterial agents to partition into the membrane. The third and final study describes our development of a procedure to generate giant spheroplasts of Vibrio cholerae and the subsequent characterization of its two major mechanosensitive channels in terms of gating, inactivation, conductivity, and compatible osmolyte sensitivity as well as the durability of the pathogen in response to osmotic shock. These contributions to the field of mechanobiology and channel biophysics suggest that environmental feedback during osmoregulation is recognized by the cell, provide a potential method to monitor the partitioning of antibiotics into a cell membrane, and lastly detail the mechano-electrical response of a relevant, disease-causing bacteria.
机译:机械敏感通道MscS是一种普遍存在的细菌膜瓣膜,在渗透压下降时会因张力增加而打开,释放少量的内部渗透物,从而防止细胞过度水化和可能的裂解。渗透压的释放伴随着渗透压的降低和细胞体积的减少,同时增加了拥挤。在原核生物和真核生物中都有大量的MscS同源物目录,使该通道的研究引向了物理生物化学领域。以下是三项不同研究的结果,其中两项研究的重点是在存在大渗透液的情况下进行MscS的门控。和两亲性化合物,第三个描述了兼性病原性霍乱弧菌内膜的第一次电生理检查。第2章中的第一个研究描述了MscS中的门控转换对大细胞内大分子的敏感性。这种敏感性起源于细胞质笼结构域,并且感知的拥挤改变了打开,关闭和失活的速率。第3章详细介绍了利用MscS作为传感器来改变天然双层的侧向压力分布,以及如何使用该技术来解决抗菌剂分配到膜中的潜力。第三项也是最后一项研究描述了我们开发的产生霍乱弧菌巨大原生质球的程序,并从门控,失活,电导率和相容的渗透压敏感性以及病原体的耐久性方面表征了其两个主要的机械敏感通道。对渗透性休克的反应。这些对机械生物学和通道生物物理学领域的贡献表明,渗透调节过程中的环境反馈被细胞识别,提供了一种监测抗生素向细胞膜中分配的潜在方法,最后详细介绍了相关疾病的机械电反应。 -引起细菌。

著录项

  • 作者

    Rowe, Ian Donald.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Chemistry Biochemistry.;Biophysics General.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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