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Crosstalk between the HpArsRS two-component system and HpNikR is necessary for maximal activation of urease transcription

机译:HpArsRS两组分系统和HpNikR之间的串扰对于最大程度激活脲酶转录是必需的

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摘要

Helicobacter pylori NikR (HpNikR) is a nickel dependent transcription factor that directly regulates a number of genes in this important gastric pathogen. One key gene that is regulated by HpNikR is ureA, which encodes for the urease enzyme. In vitro DNA binding studies of HpNikR with the ureA promoter (PureA) previously identified a recognition site that is required for high affinity protein/DNA binding. As a means to determine the in vivo significance of this recognition site and to identify the key DNA sequence determinants required for ureA transcription, herein, we have translated these in vitro results to analysis directly within H. pylori. Using a series of GFP reporter constructs in which the PureA DNA target was altered, in combination with mutant H. pylori strains deficient in key regulatory proteins, we confirmed the importance of the previously identified HpNikR recognition sequence for HpNikR-dependent ureA transcription. Moreover, we identified a second factor, the HpArsRS two-component system that was required for maximum transcription of ureA. While HpArsRS is known to regulate ureA in response to acid shock, it was previously thought to function independently of HpNikR and to have no role at neutral pH. However, our qPCR analysis of ureA expression in wildtype, ΔnikR and ΔarsS single mutants as well as a ΔarsS/nikR double mutant strain background showed reduced basal level expression of ureA when arsS was absent. Additionally, we determined that both HpNikR and HpArsRS were necessary for maximal expression of ureA under nickel, low pH and combined nickel and low pH stresses. In vitro studies of HpArsR-P with the PureA DNA target using florescence anisotropy confirmed a direct protein/DNA binding interaction. Together, these data support a model in which HpArsRS and HpNikR cooperatively interact to regulate ureA transcription under various environmental conditions. This is the first time that direct “cross-talk” between HpArsRS and HpNikR at neutral pH has been demonstrated.
机译:幽门螺杆菌NikR(HpNikR)是一种镍依赖性转录因子,直接调节这种重要的胃病原体中的许多基因。受HpNikR调控的一个关键基因是ureA,它编码尿素酶。 HpNikR与ureA启动子(PureA)的体外DNA结合研究先前确定了高亲和力蛋白质/ DNA结合所需的识别位点。作为确定此识别位点在体内的重要性并确定ureA转录所需的关键DNA序列决定因素的一种方法,在这里,我们将这些体外结果翻译为可直接在幽门螺杆菌中进行分析。使用一系列改变了PureA DNA靶点的GFP报告基因构建体,与缺乏关键调控蛋白的突变幽门螺杆菌菌株相结合,我们证实了先前鉴定的HpNikR识别序列对于依赖HpNikR的 ureA < / em>转录。此外,我们确定了第二个因子 Hp ArsRS两组分系统,这是 ureA的最大转录所必需的。 Hp ArsRS是已知的为了调节酸胁迫反应中的 ureA ,以前认为它独立于 Hp NikR起作用,并且在中性pH下不起作用。但是,我们对野生型 ureA 表达,Δ nikR 和Δ arsS 单个突变体以及Δ arsS / nikR的qPCR分析双重突变菌株背景显示,当缺少 arsS 时, ureA 的基础水平表达降低。此外,我们确定 Hp NikR和 Hp ArsRS都是 ureA 在镍,低pH以及联合镍和低pH下最大表达所必需的压力。通过荧光各向异性对 Hp ArsR-P和 PureA DNA靶标的体外研究证实了直接的蛋白质/ DNA结合相互作用。这些数据共同支持了一个模型,其中在不同的环境条件下, Hp ArsRS和 Hp NikR相互作用以调节 ureA 转录。这是首次证明在中性pH值下 Hp ArsRS与 Hp NikR之间存在直接的“串扰”。

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