Temporal Regulation of a Salmonella Typhimurium Virulence Factor by the Transcriptional Regulator YdcR.
Yanhua LiuQian LiuLinlu QiTao DingZhen WangJiaqi FuMo HuMin LiJeongmin SongXiaoyun LiuPublished in: Molecular & cellular proteomics : MCP (2017)
We previously examined Salmonella proteome within infected host cells and found differential expression of many proteins with defined functional roles such as metabolism or virulence. However, the precise roles of other altered proteins in Salmonella pathogenesis are largely unknown. A putative transcriptional regulator, YdcR, was highly induced intracellularly whereas barely expressed in vitro, implicating potential relevance to bacterial infection. To unveil its physiological functions, we exploited quantitative proteomics of intracellular Salmonella and found that genetic ablation of ydcR resulted in severe repression of SrfN, a known virulence factor. Immunoblotting, qRT-PCR, and β-galactosidase assays further demonstrate YdcR-dependent transcription and expression of srfN Moreover, we found physical interaction of YdcR with the promoter region of srfN, suggesting direct activation of its transcription. Importantly, a Salmonella mutant lacking ydcR was markedly attenuated in a mouse model of infection. Our findings reveal that YdcR temporally regulates the virulence factor SrfN during infection, thus contributing to Salmonella pathogenesis. Our work also highlights the utility of combining quantitative proteomics and bacterial genetics for uncovering the functional roles of transcription factors and likely other uncharacterized proteins as well.
Keyphrases
- escherichia coli
- transcription factor
- listeria monocytogenes
- pseudomonas aeruginosa
- biofilm formation
- staphylococcus aureus
- antimicrobial resistance
- mouse model
- mass spectrometry
- dna binding
- induced apoptosis
- poor prognosis
- mental health
- physical activity
- high resolution
- dna methylation
- cystic fibrosis
- single cell
- risk assessment
- cell death
- signaling pathway
- cell proliferation
- cell cycle arrest
- atrial fibrillation
- human health
- heat stress
- genome wide identification
- radiofrequency ablation
- heat shock