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绵羊布鲁氏菌 MucR,与苜蓿中华根瘤菌 MucR 同源,参与抵抗氧化、清洁剂和盐胁迫以及细胞包膜修饰。

Brucella melitensis MucR, an orthologue of Sinorhizobium meliloti MucR, is involved in resistance to oxidative, detergent, and saline stresses and cell envelope modifications.

机构信息

Unité de Recherche en Biologie Moléculaire (URBM), NARILIS, University of Namur (FUNDP), Namur, Belgium.

出版信息

J Bacteriol. 2013 Feb;195(3):453-65. doi: 10.1128/JB.01336-12. Epub 2012 Nov 16.

Abstract

Brucella spp. and Sinorhizobium meliloti are alphaproteobacteria that share not only an intracellular lifestyle in their respective hosts, but also a crucial requirement for cell envelope components and their timely regulation for a successful infectious cycle. Here, we report the characterization of Brucella melitensis mucR, which encodes a zinc finger transcriptional regulator that has previously been shown to be involved in cellular and mouse infections at early time points. MucR modulates the surface properties of the bacteria and their resistance to environmental stresses (i.e., oxidative stress, cationic peptide, and detergents). We show that B. melitensis mucR is a functional orthologue of S. meliloti mucR, because it was able to restore the production of succinoglycan in an S. meliloti mucR mutant, as detected by calcofluor staining. Similar to S. meliloti MucR, B. melitensis MucR also represses its own transcription and flagellar gene expression via the flagellar master regulator ftcR. More surprisingly, we demonstrate that MucR regulates a lipid A core modification in B. melitensis. These changes could account for the attenuated virulence of a mucR mutant. These data reinforce the idea that there is a common conserved circuitry between plant symbionts and animal pathogens that regulates the relationship they have with their hosts.

摘要

布鲁氏菌属和中华根瘤菌都是α变形菌,它们不仅在各自的宿主中具有细胞内生活方式,而且还需要细胞包膜成分及其及时调节才能成功进行感染周期。在这里,我们报告了布鲁氏菌属 mucR 的特征,该基因编码一个锌指转录调节因子,先前已显示其在感染的早期阶段参与细胞和小鼠感染。MucR 调节细菌的表面特性及其对环境压力(例如氧化应激,阳离子肽和清洁剂)的抵抗力。我们表明,B. melitensis mucR 是 S. meliloti mucR 的功能同源物,因为它能够恢复 S. meliloti mucR 突变体中鼠李糖半乳聚糖的产生,如Calcofluor 染色所检测到的。与 S. meliloti MucR 相似,B. melitensis MucR 还通过鞭毛主调节因子 ftcR 抑制其自身的转录和鞭毛基因表达。更令人惊讶的是,我们证明 MucR 调节 B. melitensis 中的脂 A 核心修饰。这些变化可能解释了 mucR 突变体的毒力减弱。这些数据强化了这样一种观点,即植物共生体和动物病原体之间存在共同的保守电路,可调节它们与宿主之间的关系。

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