Division of Biomedical Sciences, Warwick Medical School, University of Warwick , Coventry, United Kingdom.
Bioinformatics Research Technology Platform, University of Warwick , Coventry, United Kingdom.
mSystems. 2023 Oct 26;8(5):e0055523. doi: 10.1128/msystems.00555-23. Epub 2023 Aug 24.
The initial interactions between the colonic epithelium and the bacterium are likely critical in the establishment of infection, one of the major causes of hospital-acquired diarrhea worldwide. Molecular interactions between and human gut cells have not been well defined mainly due to the technical challenges of studying cellular host-pathogen interactions with this anaerobe. Here we have examined transcriptional changes occurring in the pathogen and host cells during the initial 24 hours of infection. Our data indicate several changes in metabolic pathways and virulence-associated factors during the initial bacterium-host cell contact and early stages of infection. We describe canonical pathways enriched based on the expression profiles of a dual RNA sequencing in the host and bacterium, and functions of bacterial factors that are modulated during infection. This study thus provides fresh insight into the early infection process.
肠上皮细胞与细菌的最初相互作用可能在感染的建立中起关键作用,感染是全球医院获得性腹泻的主要原因之一。由于研究这种厌氧菌与人体肠道细胞的细胞-病原体相互作用具有技术挑战,因此尚未很好地定义与 和人体肠道细胞之间的分子相互作用。在这里,我们研究了在感染的最初 24 小时内病原体和宿主细胞中发生的转录变化。我们的数据表明,在最初的细菌-宿主细胞接触和感染的早期阶段,代谢途径和与毒力相关的因素发生了几种变化。我们根据宿主和细菌中双重 RNA 测序的表达谱描述了基于富集的经典途径,并描述了在感染过程中被调节的细菌因子的功能。因此,这项研究为早期感染过程提供了新的见解。