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A Fluorescence-based Method to Study Bacterial Gene Regulation in Infected Tissues
Published on: February 19, 2019
RegA, an AraC-like protein, is a global transcriptional regulator that controls virulence gene expression in
Emily Hart1, Ji Yang, Marija Tauschek
1Department of Microbiology and Immunology, The University of Melbourne, Victoria 3010, Australia.
Abstract:
Citrobacter rodentium is an attaching and effacing pathogen which causes transmissible colonic hyperplasia in mice. Infection with C. rodentium serves as a model for infection of humans with enteropathogenic and enterohemorrhagic Escherichia coli. To identify novel colonization factors of C. rodentium, we screened a signature-tagged mutant library of C. rodentium in mice. One noncolonizing mutant had a single transposon insertion in an open reading frame (ORF) which we designated regA because of its homology to genes encoding members of the AraC family of transcriptional regulators. Deletion of regA in C. rodentium resulted in markedly reduced colonization of the mouse intestine. Examination of lacZ transcriptional fusions using promoter regions of known and putative virulence-associated genes of C. rodentium revealed that RegA strongly stimulated transcription of two newly identified genes located close to regA, which we designated adcA and kfcC. The cloned adcA gene conferred autoaggregation and adherence to mammalian cells to E. coli strain DH5alpha, and a kfc mutation led to a reduction in the duration of intestinal colonization, but the kfc mutant was far less attenuated than the regA mutant. These results indicated that other genes of C. rodentium whose expression required activation by RegA were required for colonization. Microarray analysis revealed a number of RegA-regulated ORFs encoding proteins homologous to known colonization factors. Transcription of these putative virulence determinants was activated by RegA only in the presence of sodium bicarbonate. Taken together, these results show that RegA is a global regulator of virulence in C. rodentium which activates factors that are required for intestinal colonization.
Insights
RegA is a key transcriptional regulator in Citrobacter rodentium, controlling essential virulence factors for intestinal colonization. This discovery enhances our understanding of bacterial pathogenesis and host-pathogen interactions.
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Molecular Biology
Background:
- Citrobacter rodentium is a murine model pathogen for human enteropathogenic and enterohemorrhagic E. coli.
- Identifying novel bacterial colonization factors is crucial for understanding infectious disease.
Purpose of the Study:
- To identify novel colonization factors of Citrobacter rodentium.
- To elucidate the regulatory mechanisms governing C. rodentium virulence.
Main Methods:
- Screening of a signature-tagged mutant library in a mouse model.
- Deletion mutagenesis and construction of lacZ transcriptional fusions.
- Microarray analysis to identify RegA-regulated genes.
Main Results:
- A novel transcriptional regulator, RegA, was identified and found essential for C. rodentium intestinal colonization.
- RegA activates transcription of virulence-associated genes, including adcA and kfcC.
- RegA-mediated gene activation requires sodium bicarbonate, suggesting environmental regulation of virulence.
Conclusions:
- RegA is a global virulence regulator in C. rodentium.
- RegA controls multiple factors necessary for intestinal colonization.
- Understanding RegA's role provides insights into bacterial adaptation and pathogenesis.
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