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A novel two component signaling protein regulates expression of the type III secretion system and virulence of Pseudomonas aeruginosa.

机译:一种新型的两成分信号蛋白调节III型分泌系统的表达和铜绿假单胞菌的毒力。

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摘要

Pseudomonas aeruginosa is a highly virulent, opportunistic pathogen that has the ability to cause both acute and chronic infections in susceptible hosts. The ability to cause these two distinct types of disease is dependent on the coordinate regulation of multiple virulence factors. We have identified a hybrid two component signaling protein, RetS (RtsM), which is required for the expression of one of these virulence factors, the type III secretion system, in response to both in vitro inducing conditions and host cells. In addition, a strain in which retS is deleted (DeltaretS) is markedly less virulent in a murine model of acute pneumonia, demonstrating that RetS is required in vivo.; RetS is an unusual signaling protein with two tandem response regulator receiver domains. An analysis of the predicted phosphoacceptor sites of RetS found that receiver domain 1 is not required for the function of RetS and phosphorylation of this domain may serve to inhibit RetS signaling. Conversely, the residues important for phosphorylation of the second receiver domain are critical for RetS function. In addition, our data suggests that this domain may serve as a substrate for an additional sensor kinase or may function in a phosphatase reaction. These findings, in conjunction with the work of others, support a model in which regulation by RetS is accomplished by affecting the GacS/GacA global regulatory pathway and changing the levels of a small regulatory RNA, rsmZ.; We predict that signaling through RetS to induce expression of the type III secretion system is activated by sensing a particular signal, although it has not been identified. Our work demonstrates that the periplasmic domain of RetS is not required to activate expression of the type III secretion system, but may function to repress RetS activity in vivo. Conversely, the transmembrane domains of RetS may play an active role in signal sensing. Although independent of RetS, our experiments provide evidence that particular amino acids and the growth rate of the bacteria may play a role in the induction of the type III secretion system.
机译:铜绿假单胞菌是一种高毒性,机会性病原体,能够在易感宿主中引起急性和慢性感染。导致这两种不同类型疾病的能力取决于多种毒力因子的协调调节。我们已经确定了一种混合的两种成分的信号传导蛋白,RetS(RtsM),它是表达这些毒力因子之一(III型分泌系统)所必需的,以响应体外诱导条件和宿主细胞。另外,缺失retS的菌株(DeltaretS)在急性肺炎的鼠模型中的毒性低得多,表明在体内需要RetS。 RetS是具有两个串联响应调节器受体结构域的不寻常的信号蛋白。对RetS的预测磷酸受体位点的分析发现,RetS的功能不需要受体结构域1,并且该结构域的磷酸化可能会抑制RetS信号传导。相反,对于第二受体结构域的磷酸化重要的残基对于RetS功能至关重要。此外,我们的数据表明,该结构域可能充当其他传感器激酶的底物,或可能在磷酸酶反应中发挥作用。这些发现与其他研究结果一起,为通过RetS调控通过影响GacS / GacA全球调控途径并改变小调控RNA rsmZ的水平提供了一种模式。我们预测,通过RetS诱导III型分泌系统表达的信号传导是通过感测特定信号而激活的,尽管尚未确定。我们的工作表明,RetS的周质结构域不是激活III型分泌系统表达所必需的,但可能在体内抑制RetS的活性。相反,RetS的跨膜域可能在信号传感中发挥积极作用。尽管不依赖于RetS,我们的实验提供了证据,即特定的氨基酸和细菌的生长速率可能在III型分泌系统的诱导中起作用。

著录项

  • 作者单位

    Yale University.;

  • 授予单位 Yale University.;
  • 学科 Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 246 p.
  • 总页数 246
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;
  • 关键词

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