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RpoN(sigma 因子 54)有助于百日咳博德特氏菌在气管定植期间的细菌适应性。

RpoN (sigma factor 54) contributes to bacterial fitness during tracheal colonization of Bordetella bronchiseptica.

机构信息

Department of Molecular Bacteriology, Research Institute for Microbial Diseases, Osaka University, Osaka, Japan.

Center for Infectious Disease Education and Research, Osaka University, Osaka, Japan.

出版信息

Microbiol Immunol. 2024 Feb;68(2):36-46. doi: 10.1111/1348-0421.13109. Epub 2023 Dec 17.

Abstract

The Gram-negative pathogenic bacterium Bordetella bronchiseptica is a respiratory pathogen closely related to Bordetella pertussis, the causative agent of whooping cough. Despite sharing homologous virulence factors, B. bronchiseptica infects a broad range of mammalian hosts, including some experimental animals, whereas B. pertussis is strictly adapted to humans. Therefore, B. bronchiseptica is often used as a representative model to explore the pathogenicity of Bordetella in infection experiments with laboratory animals. Although Bordetella virulence factors, including toxins and adhesins have been studied well, our recent study implied that unknown virulence factors are involved in tracheal colonization and infection. Here, we investigated bacterial genes contributing to tracheal colonization by high-throughput transposon sequencing (Tn-seq). After the screening, we picked up 151 candidate genes of various functions and found that a rpoN-deficient mutant strain was defective in tracheal colonization when co-inoculated with the wild-type strain. rpoN encodes σ , a sigma factor that regulates the transcription of various genes, implying its contribution to various bacterial activities. In fact, we found RpoN of B. bronchiseptica is involved in bacterial motility and initial biofilm formation. From these results, we propose that RpoN supports bacterial colonization by regulating various bacteriological functions.

摘要

革兰氏阴性病原菌支气管败血波氏杆菌(Bordetella bronchiseptica)是一种呼吸道病原体,与百日咳的病原体百日咳博德特氏菌(Bordetella pertussis)密切相关。尽管两者具有同源性的毒力因子,但 B. bronchiseptica 感染范围广泛,包括一些实验动物在内的多种哺乳动物宿主,而 B. pertussis 则严格适应人类。因此,B. bronchiseptica 常被用作代表模型,用于在感染实验动物的实验中探索博德特氏菌的致病性。尽管博德特氏菌的毒力因子,包括毒素和黏附素已得到很好的研究,但我们最近的研究表明,未知的毒力因子参与了气管定植和感染。在这里,我们通过高通量转座子测序(Tn-seq)研究了与气管定植相关的细菌基因。经过筛选,我们挑选出了 151 个具有各种功能的候选基因,发现 rpoN 缺陷突变株与野生型菌株共同接种时,在气管定植方面存在缺陷。rpoN 编码σ,一种调节各种基因转录的σ因子,这意味着它对各种细菌活性都有贡献。事实上,我们发现支气管败血波氏杆菌的 RpoN 参与了细菌的运动性和初始生物膜形成。根据这些结果,我们提出 RpoN 通过调节各种细菌功能来支持细菌定植。

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