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由双组分系统BvrR/BvrS控制的表型受到BvrR磷酸化的不同影响。

Phenotypes controlled by the two component system BvrR/BvrS are differentially impacted by BvrR phosphorylation.

作者信息

Altamirano-Silva Pamela, Meza-Torres Jazmín, Zúñiga-Pereira Ana Mariel, Zamora-Jaen Sigrid, Pietrosemoli Natalia, Cantos Gabriela, Peltier Johann, Pizarro-Cerdá Javier, Moreno Edgardo, Chacón-Díaz Carlos, Guzmán-Verri Caterina, Chaves-Olarte Esteban

机构信息

Centro de Investigación en Enfermedades Tropicales, Facultad de Microbiología, Universidad de Costa Rica, San José, Costa Rica.

Bioinformatics and Biostatistics Hub, CNRS USR3756, Institut Pasteur, Université Paris Cité, Paris, France.

出版信息

Front Microbiol. 2023 May 10;14:1148233. doi: 10.3389/fmicb.2023.1148233. eCollection 2023.

Abstract

is a zoonotic pathogen whose virulence depends on its ability to survive intracellularly at the endoplasmic reticulum derived compartment. The two-component system BvrR/BvrS (BvrRS) is essential for intracellular survival due to the transcriptional control of the type IV secretion system VirB and its transcriptional regulator VjbR. It is a master regulator of several traits including membrane homeostasis by controlling gene expression of membrane components, such as Omp25. BvrR phosphorylation is related to DNA binding at target regions, thereby repressing or activating gene transcription. To understand the role of BvrR phosphorylation we generated dominant positive and negative versions of this response regulator, mimicking phosphorylated and non-phosphorylated BvrR states and, in addition to the wild-type version, these variants were introduced in a BvrR negative background. We then characterized BvrRS-controlled phenotypes and assessed the expression of proteins regulated by the system. We found two regulatory patterns exerted by BvrR. The first pattern was represented by resistance to polymyxin and expression of Omp25 (membrane conformation) which were restored to normal levels by the dominant positive and the wild-type version, but not the dominant negative BvrR. The second pattern was represented by intracellular survival and expression of VjbR and VirB (virulence) which were, again, complemented by the wild-type and the dominant positive variants of BvrR but were also significantly restored by complementation with the dominant negative BvrR. These results indicate a differential transcriptional response of the genes controlled to the phosphorylation status of BvrR and suggest that unphosphorylated BvrR binds and impacts the expression of a subset of genes. We confirmed this hypothesis by showing that the dominant negative BvrR did not interact with the promoter whereas it could interact with promoter. Furthermore, a global transcriptional analysis revealed that a subset of genes responds to the presence of the dominant negative BvrR. Thus, BvrR possesses diverse strategies to exert transcriptional control on the genes it regulates and, consequently, impacting on the phenotypes controlled by this response regulator.

摘要

是一种人畜共患病原体,其毒力取决于在内质网衍生区室中进行细胞内生存的能力。双组分系统BvrR/BvrS(BvrRS)由于对IV型分泌系统VirB及其转录调节因子VjbR的转录控制,对细胞内生存至关重要。它是多种性状的主要调节因子,包括通过控制膜成分(如Omp25)的基因表达来维持膜稳态。BvrR磷酸化与靶区域的DNA结合相关,从而抑制或激活基因转录。为了了解BvrR磷酸化的作用,我们生成了这种应答调节因子的显性正型和负型,模拟磷酸化和非磷酸化的BvrR状态,并且除了野生型版本外,这些变体被引入BvrR阴性背景中。然后我们对BvrRS控制的表型进行了表征,并评估了该系统调节的蛋白质的表达。我们发现BvrR发挥了两种调节模式。第一种模式表现为对多粘菌素的抗性和Omp25的表达(膜构象),显性正型和野生型版本将其恢复到正常水平,但显性负型BvrR则不能。第二种模式表现为细胞内生存以及VjbR和VirB的表达(毒力),同样,野生型和BvrR的显性正型变体对其进行了互补,但与显性负型BvrR互补时也显著恢复。这些结果表明,所控制的基因对BvrR磷酸化状态存在差异转录反应,并表明未磷酸化的BvrR结合并影响一部分基因的表达。我们通过显示显性负型BvrR不与 启动子相互作用而它可以与 启动子相互作用,证实了这一假设。此外,全局转录分析表明,一部分基因对显性负型BvrR的存在有反应。因此,BvrR拥有多种策略来对其调节的基因进行转录控制,从而影响由该应答调节因子控制的表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b201/10206243/1a853a5bfb9f/fmicb-14-1148233-g001.jpg

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