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Genetic analysis of c-di-GMP signaling and virulence in Dickeya dadantii 3937.

机译:Dickeya dadantii 3937中c-di-GMP信号传导和毒力的遗传分析。

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摘要

Cyclic nucleotides are often used as second messengers to link environmental or intracellular stimuli with the output regulation of cell metabolism and physiology in all kingdoms of life. Recently, a novel signal transduction network involving cyclic diguanylate (c-di-GMP) was recognized and it appears to be restricted to bacteria. C-di-GMP plays a role in switching of bacterial lifestyle, between motile single cells and sedentary multicellular biofilm. In addition, c-di-GMP regulates virulence factors in plant and animal pathogens. Synthesis and degradation of c-di-GMP has been characterized in some enterobacteria. However, little is known about the regulatory cascade in c-di-GMP signaling, including the signal perception, the downstream effectors, and targets that interact with c-di-GMP. In this work, the c-di-GMP signaling network was investigated using the model plant pathogen Dickeya dadantii 3937.;In Chapter 2, a panel of GGDEF and EAL proteins from D. dadantii was characterized. Two EAL proteins, EcpB and EcpC, regulate c-di-GMP-associated phenotypes, including biofilm formation and motility. EcpB and EcpC are also required for the synthesis and/or expression of virulence determinants, exoenzyme production and type III secretion system. Genetic analysis showed that two sigma factors, RpoN and HrpL, are involved in c-di-GMP regulation of the type III secretion system. Biochemical analysis identified EcpC as a c-di-GMP phosphodiesterase. C-di-GMP was shown for the first time to repress a type III secretion system. C-di-GMP effects on cell physiology and virulence factor synthesis make this second messenger a potential target for drug design.;In Chapter 3, the GGDEF and EAL proteins were further analyzed and the molecular mechanism of c-di-GMP signaling was explored. GcpA, a GGDEF protein, and EcpA, an EAL protein, positively regulate biofilm formation and negatively control the type III secretion system, processes related to high c-di-GMP levels. YcgR, a PiIZ-domain protein, was shown to be involved in c-di-GMP signaling and may function as a c-di-GMP-binding effector. From these results, a c-di-GMP signaling model with dynamic interaction of c-di-GMP and its effectors, YcgR and EcpA, was developed.;In addition to the contribution in understanding the c-di-GMP signaling system, the role of lipopolysaccharide in pathogenesis in D. dadantii was evaluated. In Chapter 4, the deletion of waaC, which encodes a heptosyltransferase I ortholog, causes pleiotropic effects including a reduction in virulence. The waaC mutantation led to upregulation of two major virulence factors, exoenzyme production and expression of the type III secretion system. This work indicates that lipopolysaccharide is an important surface-associated virulence factor, and suggests a sophisticated coordination among virulence factors.
机译:环状核苷酸通常用作第二信使,以在所有生命王国中将环境或细胞内刺激与细胞代谢和生理的输出调节联系起来。最近,一种新型的涉及环二鸟苷酸(c-di-GMP)的信号转导网络得到了认可,并且似乎仅限于细菌。 C-di-GMP在运动型单细胞和久坐的多细胞生物膜之间的细菌生活方式转换中发挥作用。另外,c-di-GMP调节植物和动物病原体中的毒力因子。在一些肠杆菌中已经表征了c-di-GMP的合成和降解。但是,对c-di-GMP信号传导中的调控级联知之甚少,包括信号感知,下游效应子和与c-di-GMP相互作用的靶标。在这项工作中,使用模式植物病原体Dickeya dadantii 3937研究了c-di-GMP信号网络。在第二章中,对了D. dadantii的GGDEF和EAL蛋白进行了表征。两种EAL蛋白EcpB和EcpC调节c-di-GMP相关的表型,包括生物膜形成和运动性。 EcpB和EcpC对于毒力决定簇的合成和/或表达,外切酶的产生以及III型分泌系统也是必需的。遗传分析表明,两个sigma因子RpoN和HrpL参与了III型分泌系统的c-di-GMP调控。生化分析确定EcpC为c-di-GMP磷酸二酯酶。首次显示C-di-GMP抑制III型分泌系统。 C-di-GMP对细胞生理和毒力因子合成的影响使第二信使成为药物设计的潜在靶标。在第三章中,对GGDEF和EAL蛋白进行了进一步分析,并探讨了c-di-GMP信号传导的分子机制。 。 GcpA(一种GGDEF蛋白)和EcpA(一种EAL蛋白)可正向调节生物膜的形成并负向控制III型分泌系统,这些过程与高c-di-GMP水平有关。 YcgR,一种PiIZ域蛋白,显示参与c-di-GMP信号传导,并可能起c-di-GMP结合效应子的作用。根据这些结果,建立了具有c-di-GMP及其效应物YcgR和EcpA动态相互作用的c-di-GMP信号模型。除了有助于理解c-di-GMP信号系统外,评估了脂多糖在D. dadantii发病机理中的作用。在第4章中,waaC的缺失(编码一个庚基转移酶I直系同源基因)引起多效性效应,包括毒性降低。 waaC突变导致两个主要毒力因子,外酶产生和III型分泌系统表达上调。这项工作表明脂多糖是一种重要的表面相关毒力因子,并建议毒力因子之间的复杂协调。

著录项

  • 作者

    Yi, Xuan.;

  • 作者单位

    The University of Wisconsin - Milwaukee.;

  • 授予单位 The University of Wisconsin - Milwaukee.;
  • 学科 Biology Molecular.;Biology Microbiology.;Agriculture Plant Pathology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 97 p.
  • 总页数 97
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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