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Signal transduction through the Vibrio harveyi quorum-sensing cascade.

机译:通过哈维氏弧菌群体感应级联信号转导。

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摘要

Quorum sensing is a process of cell-to-cell communication by which bacteria measure fluctuations in cell population density via secreted signal molecules called autoinducers. As cell population density increases, the accumulation of autoinducers leads to synchronous changes in gene expression in the bacterial community. Vibrio harveyi, a Gram-negative marine bacterium, produces three autoinducers and employs three cognate hybrid histidine sensor kinases to detect and respond to them.;Of particular interest to this work is the autoinducer called AI-2, which is produced and detected by diverse species of bacteria to facilitate interspecies communication. In Vibrios, AI-2 is detected by a heterodimer of the periplasmic binding protein, LuxP, and the histidine sensor kinase, LuxQ. Despite the frequency with which bacteria employ histidine sensor kinases to sense their environment, how kinase activity is regulated by ligand binding is not well understood. The experiments described in this thesis reveal that AI-2 binding causes a major conformational change in LuxP, stabilizing a quaternary arrangement in which two LuxPQ monomers are asymmetrically associated. Investigation of LuxQ kinase activity confirmed that autophosphorylation occurs in trans within a LuxQ dimer, while subsequent phosphotransfer occurs in cis. Therefore, the asymmetric quaternary structure induced by AI-2 in the periplasm is proposed to disrupt cytoplasmic symmetry and repress LuxQ kinase activity by preventing in trans autophosphorylation. The HAMP linker was identified as the domain responsible for LuxQ dimerization, suggesting that periplasmic asymmetry is transduced to the LuxQ cytoplasmic domains by disrupting HAMP-mediated dimerization.;The activity of all three histidine sensor kinase receptors is integrated into a shared phosphorelay cascade that ultimately controls production of LuxR, the quorum-sensing master regulator. LuxR is an unusual member of the TetR protein superfamily because it is capable of activating and repressing a large number of genes. Using protein binding microarrays and a two-layered bioinformatics approach, LuxR was shown to bind a 21 bp consensus operator with dyad symmetry. The definition and subsequent characterization of the LuxR consensus sequence enabled a scan of the V. harveyi genome and identification of novel targets of LuxR, thus expanding the understanding of the quorum-sensing regulon.
机译:群体感应是细胞间通信的过程,细菌通过该过程通过称为自动诱导物的分泌信号分子来测量细胞种群密度的波动。随着细胞种群密度的增加,自诱导剂的积累导致细菌群落中基因表达的同步变化。哈氏弧菌是一种革兰氏阴性海洋细菌,它产生三种自诱导剂,并利用三种同源杂交组氨酸传感器激酶来检测和响应它们。这项工作特别令人感兴趣的是一种称为AI-2的自诱导剂,它是由多种途径产生和检测的。细菌种类,以促进种间交流。在弧菌中,AI-2由周质结合蛋白LuxP和组氨酸传感器激酶LuxQ的异二聚体检测。尽管细菌使用组氨酸传感器激酶来感知其环境的频率很高,但如何通过配体结合调节激酶活性尚不清楚。本文描述的实验表明,AI-2结合会导致LuxP的主要构象变化,从而稳定其中两个LuxPQ单体不对称结合的四级排列。 LuxQ激酶活性的研究证实,在LuxQ二聚体中反式发生了自磷酸化,而顺式发生了随后的磷酸转移。因此,提出了由AI-2在周质中诱导的不对称四级结构通过防止反式自磷酸化来破坏细胞质对称性并抑制LuxQ激酶活性。 HAMP接头被确定为负责LuxQ二聚化的结构域,表明通过破坏HAMP介导的二聚作用将周质不对称性转导至LuxQ细胞质结构域。;所有三个组氨酸传感器激酶受体的活性均整合到一个共享的磷灰泥级联反应中,最终控制法定人数的主要监管者LuxR的生产。 LuxR是TetR蛋白超家族的不寻常成员,因为它能够激活和抑制大量基因。使用蛋白质结合微阵列和两层生物信息学方法,LuxR被证明可以结合一个21 bp具有二分体对称性的共有操纵子。 LuxR共有序列的定义和随后的表征使得能够扫描哈维弧菌基因组并鉴定LuxR的新靶标,从而扩大了对群体感应调节子的理解。

著录项

  • 作者

    Pompeani, Audra Jo.;

  • 作者单位

    Princeton University.;

  • 授予单位 Princeton University.;
  • 学科 Biology Molecular.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 189 p.
  • 总页数 189
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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