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强烈的跨系统相互作用驱动了 QseB 应答调节子的激活,即使没有其同源传感器的存在。

Strong cross-system interactions drive the activation of the QseB response regulator in the absence of its cognate sensor.

机构信息

Department of Pathology, Microbiology, and Immunology, Vanderbilt University School of Medicine, Nashville, TN 37232.

出版信息

Proc Natl Acad Sci U S A. 2013 Oct 8;110(41):16592-7. doi: 10.1073/pnas.1315320110. Epub 2013 Sep 23.

DOI:10.1073/pnas.1315320110
PMID:24062463
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3799328/
Abstract

Bacterial two-component systems (TCSs) mediate specific responses to distinct conditions and/or stresses. TCS interactions are highly specific between cognate partners to avoid unintended cross-talk. Although cross-talk between a sensor kinase and a noncognate response regulator has been previously demonstrated, the majority of reported interactions have not been robust. Here, we report that in the case of the quorum-sensing Escherichia coli (Qse)BC TCS, absence of the cognate sensor QseC leads to robust, constitutive activation of the QseB response regulator by the noncognate polymyxin resistance (Pmr) sensor kinase PmrB. Remarkably, the noncognate PmrB exhibits a kinetic preference for QseB that is similar to QseC. However, although PmrB readily phosphorylates QseB in vitro, it is significantly less efficient at dephosphorylating QseB, compared with QseC, thereby explaining the increased levels of active QseB in the qseC mutant. In addition to PmrB activating QseB on the protein level, we found that the PmrA response regulator contributes to qseB transcription in the absence of QseC and PmrA specifically binds the qseBC promoter, indicative of a direct regulation of qseBC gene transcription by PmrAB under physiological conditions. Addition of ferric iron in the growth medium of wild-type uropathogenic E. coli induced the expression of qseBC in a PmrB-dependent manner. Taken together, our findings suggest that (i) robust cross-talk between noncognate partners is possible and (ii) this interaction can be manipulated for the development of antivirulence strategies aimed at targeting uropathogenic Escherichia coli and potentially other QseBC-PmrAB-bearing pathogens.

摘要

细菌双组分系统 (TCS) 介导对不同条件和/或应激的特定反应。TCS 相互作用在同源配对物之间具有高度特异性,以避免意外的串扰。尽管先前已经证明了传感器激酶和非同源响应调节剂之间的串扰,但大多数报道的相互作用并不稳定。在这里,我们报告了在群体感应大肠杆菌 (Qse)BC TCS 的情况下,缺乏同源传感器 QseC 会导致非同源多粘菌素抗性 (Pmr) 传感器激酶 PmrB 对 QseB 响应调节剂的稳健、组成性激活。值得注意的是,非同源 PmrB 对 QseB 的动力学偏好与 QseC 相似。然而,尽管 PmrB 易于在体外磷酸化 QseB,但与 QseC 相比,它在去磷酸化 QseB 方面的效率要低得多,这解释了 qseC 突变体中活性 QseB 水平的增加。除了 PmrB 在蛋白质水平上激活 QseB 之外,我们还发现 PmrA 响应调节剂有助于在缺乏 QseC 和 PmrA 的情况下 qseB 转录,并且 PmrA 特异性结合 qseBC 启动子,表明 PmrAB 在生理条件下直接调节 qseBC 基因转录。在野生型尿路致病性大肠杆菌的生长培养基中添加铁会以 PmrB 依赖的方式诱导 qseBC 的表达。总之,我们的研究结果表明:(i) 非同源伴侣之间存在稳健的串扰是可能的;(ii) 可以操纵这种相互作用,以开发针对尿路致病性大肠杆菌和可能其他携带 QseBC-PmrAB 的病原体的抗病毒策略。

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Distinguishing the contribution of type 1 pili from that of other QseB-misregulated factors when QseC is absent during urinary tract infection.在尿路感染期间 QseC 缺失时,区分 1 型菌毛和其他 QseB 失调因子的贡献。
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The Salmonella enterica serovar Typhimurium QseB response regulator negatively regulates bacterial motility and swine colonization in the absence of the QseC sensor kinase.肠炎沙门氏菌血清型 Typhimurium 的 QseB 反应调节剂在缺乏 QseC 传感器激酶的情况下负调控细菌的运动性和猪的定植。
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QseC-mediated dephosphorylation of QseB is required for expression of genes associated with virulence in uropathogenic Escherichia coli.在尿路致病性大肠杆菌中,QseC介导的QseB去磷酸化作用对于与毒力相关基因的表达是必需的。
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