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RelA 调控弗氏柠檬酸杆菌的毒力和细胞内生存能力。

RelA regulates virulence and intracellular survival of Francisella novicida.

机构信息

Biomedical Sciences, Dstl Porton Down, Salisbury, Wiltshire SP4 0JQ, UK.

School of Biosciences, University of Exeter, Geoffrey Pope Building, Stocker Road, Exeter EX4 4QD, UK.

出版信息

Microbiology (Reading). 2009 Dec;155(Pt 12):4104-4113. doi: 10.1099/mic.0.031021-0. Epub 2009 Sep 17.

Abstract

Analysis of the genome of Francisella tularensis has revealed few regulatory systems, and how the organism adapts to conditions in different niches is poorly understood. The stringent response is a global stress response mediated by (p)ppGpp. The enzyme RelA has been shown to be involved in generation of this signal molecule in a range of bacterial species. We investigated the effect of inactivation of the relA gene in Francisella by generating a mutant in Francisella novicida. Under amino acid starvation conditions, the relA mutant was defective for (p)ppGpp production. Characterization showed the mutant to grow similarly to the wild-type, except that it entered stationary phase later than wild-type cultures, resulting in higher cell yields. The relA mutant showed increased biofilm formation, which may be linked to the delay in entering stationary phase, which in turn would result in higher cell numbers present in the biofilm and reduced resistance to in vitro stress. The mutant was attenuated in the J774A macrophage cell line and was shown to be attenuated in the mouse model of tularaemia, but was able to induce a protective immune response. Therefore, (p)ppGpp appears to be an important intracellular signal, integral to the pathogenesis of F. novicida.

摘要

对弗朗西斯氏菌属的基因组进行分析表明,该菌仅有少数几个调节系统,而其如何适应不同生境中的条件仍知之甚少。严谨反应是一种由 (p)ppGpp 介导的全局应激反应。已有研究表明,在多种细菌中,RelA 酶参与了该信号分子的产生。我们通过在弗氏志贺氏菌中生成突变体来研究弗朗西斯氏菌属中 relA 基因失活的影响。在氨基酸饥饿条件下,relA 突变体无法产生 (p)ppGpp。特性分析表明,突变体的生长与野生型相似,只是其进入稳定期的时间晚于野生型培养物,从而导致细胞产量更高。relA 突变体表现出增强的生物膜形成能力,这可能与进入稳定期的延迟有关,而这反过来又会导致生物膜中存在更多的细胞数量,并降低对体外应激的抵抗力。突变体在 J774A 巨噬细胞系中减毒,在土拉热弗朗西斯氏菌的小鼠模型中也表现出减毒,但能够诱导保护性免疫反应。因此,(p)ppGpp 似乎是一种重要的细胞内信号分子,是弗氏志贺氏菌发病机制的重要组成部分。

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