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氧化应激通过一种需要SpxA1和正向自调控的机制诱导炭疽芽孢杆菌斯特恩株中spxA2转录的证据。

Evidence that Oxidative Stress Induces spxA2 Transcription in Bacillus anthracis Sterne through a Mechanism Requiring SpxA1 and Positive Autoregulation.

作者信息

Barendt Skye, Birch Cierra, Mbengi Lea, Zuber Peter

机构信息

Institute of Environmental Health, Oregon Health and Science University, Portland, Oregon, USA.

Institute of Environmental Health, Oregon Health and Science University, Portland, Oregon, USA

出版信息

J Bacteriol. 2016 Oct 7;198(21):2902-2913. doi: 10.1128/JB.00512-16. Print 2016 Nov 1.

Abstract

UNLABELLED

Bacillus anthracis possesses two paralogs of the transcriptional regulator, Spx. SpxA1 and SpxA2 interact with RNA polymerase (RNAP) to activate the transcription of genes implicated in the prevention and alleviation of oxidative protein damage. The spxA2 gene is highly upregulated in infected macrophages, but how this is achieved is unknown. Previous studies have shown that the spxA2 gene was under negative control by the Rrf2 family repressor protein, SaiR, whose activity is sensitive to oxidative stress. These studies also suggested that spxA2 was under positive autoregulation. In the present study, we show by in vivo and in vitro analyses that spxA2 is under direct autoregulation but is also dependent on the SpxA1 paralogous protein. The deletion of either spxA1 or spxA2 reduced the diamide-inducible expression of an spxA2-lacZ construct. In vitro transcription reactions using purified B. anthracis RNAP showed that SpxA1 and SpxA2 protein stimulates transcription from a DNA fragment containing the spxA2 promoter. Ectopically positioned spxA2-lacZ fusion requires both SpxA1 and SpxA2 for expression, but the requirement for SpxA1 is partially overcome when saiR is deleted. Electrophoretic mobility shift assays showed that SpxA1 and SpxA2 enhance the affinity of RNAP for spxA2 promoter DNA and that this activity is sensitive to reductant. We hypothesize that the previously observed upregulation of spxA2 in the oxidative environment of the macrophage is at least partly due to SpxA1-mediated SaiR repressor inactivation and the positive autoregulation of spxA2 transcription.

IMPORTANCE

Regulators of transcription initiation are known to govern the expression of genes required for virulence in pathogenic bacterial species. Members of the Spx family of transcription factors function in control of genes required for virulence and viability in low-GC Gram-positive bacteria. In Bacillus anthracis, the spxA2 gene is highly induced in infected macrophages, which suggests an important role in the control of virulence gene expression during the anthrax disease state. We provide evidence that elevated concentrations of oxidized, active SpxA2 result from an autoregulatory positive-feedback loop driving spxA2 transcription.

摘要

未标记

炭疽芽孢杆菌拥有转录调节因子Spx的两个旁系同源物。SpxA1和SpxA2与RNA聚合酶(RNAP)相互作用,以激活与预防和减轻氧化蛋白损伤相关的基因的转录。spxA2基因在受感染的巨噬细胞中高度上调,但其实现方式尚不清楚。先前的研究表明,spxA2基因受Rrf2家族阻遏蛋白SaiR的负调控,其活性对氧化应激敏感。这些研究还表明spxA2存在正自调控。在本研究中,我们通过体内和体外分析表明,spxA2受直接自调控,但也依赖于SpxA1旁系同源蛋白。缺失spxA1或spxA2会降低spxA2 - lacZ构建体的二酰胺诱导表达。使用纯化的炭疽芽孢杆菌RNAP进行的体外转录反应表明,SpxA1和SpxA2蛋白刺激从包含spxA2启动子的DNA片段进行转录。异位定位的spxA2 - lacZ融合表达需要SpxA1和SpxA2两者,但当删除saiR时,对SpxA1的需求可部分得到克服。电泳迁移率变动分析表明,SpxA1和SpxA2增强了RNAP对spxA2启动子DNA的亲和力,并且该活性对还原剂敏感。我们假设,先前在巨噬细胞氧化环境中观察到的spxA2上调至少部分归因于SpxA1介导的SaiR阻遏物失活和spxA2转录的正自调控。

重要性

已知转录起始调节因子可控制致病细菌物种中毒力所需基因的表达。Spx转录因子家族的成员在低GC革兰氏阳性细菌中毒力和生存能力所需基因的控制中发挥作用。在炭疽芽孢杆菌中,spxA2基因在受感染的巨噬细胞中高度诱导,这表明其在炭疽病状态下的毒力基因表达控制中起重要作用。我们提供的证据表明,氧化的、活性SpxA2浓度升高是由驱动spxA2转录的自调控正反馈环导致的。

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