College of Animal Science and Technology & College of Veterinary Medicine of Zhejiang A&F University, Key Laboratory of Applied Technology on Green-Eco-Healthy Animal Husbandry of Zhejiang Province, China-Australia Joint Laboratory for Animal Health Big Data Analytics, Zhejiang Provincial Engineering Laboratory for Animal Health Inspection & Internet Technology , Hangzhou, Zhejiang, P. R. China.
Gut Microbes. 2021 Jan-Dec;13(1):1-19. doi: 10.1080/19490976.2021.1884517.
The foodborne pathogen es relies on its ability to fine-tune the expression of virulence factors and stress regulators in response to rapidly changing environments. Here, we reveal that YjbH, a putative thioredoxin family oxidoreductase, plays a pivotal role in bacterial adaption to oxidative stress and host infection. YjbH directly interacts with SpxA1, an ArsC family oxidative stress response regulator, and the deletion of YjbH compromised the oxidative stress tolerance of . Also, YjbH is required for the bacterial spread in host cells and proliferation in mouse organs, thereby contributing to virulence. Transcriptomic analysis of strains treated with Cd revealed that most virulence genes and phosphoenolpyruvate-carbohydrate phosphotransferase system (PTS) genes were significantly downregulated in the absence of YjbH. However, YjbH inhibits PrfA expression when bacteria were grown in the media, suggesting that YjbH participates in regulating the virulence genes via a complicated regulatory network involving PrfA and PTS. Collectively, these findings provide a valuable model for clarifying the roles of thioredoxins from foodborne pathogens regarding improving survival in the external environment and, more importantly, successfully establishing infection within the host.
食源性病原体依赖于其微调毒力因子和应激调节剂表达的能力,以适应快速变化的环境。在这里,我们揭示了假定的硫氧还蛋白家族氧化还原酶 YjbH 在细菌适应氧化应激和宿主感染中起着关键作用。YjbH 直接与 SpxA1(ArsC 家族氧化应激反应调节剂)相互作用,缺失 YjbH 会损害 的氧化应激耐受性。此外,YjbH 是细菌在宿主细胞中扩散和在小鼠器官中增殖所必需的,从而有助于毒力。用 Cd 处理的菌株的转录组分析表明,在没有 YjbH 的情况下,大多数毒力基因和磷酸烯醇丙酮酸-碳水化合物磷酸转移酶系统(PTS)基因的表达显著下调。然而,当细菌在培养基中生长时,YjbH 抑制 PrfA 的表达,这表明 YjbH 通过涉及 PrfA 和 PTS 的复杂调控网络参与调节毒力基因。总之,这些发现为阐明食源性病原体的硫氧还蛋白在改善其在外环境中的生存能力,以及更重要的是,成功在宿主内建立感染方面的作用提供了有价值的模型。