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Updated: Aug 14, 2026

High-throughput Assay to Phenotype Salmonella enterica Typhimurium Association, Invasion, and Replication in Macrophages
Published on: August 11, 2014
PhoP/PhoQ: macrophage-specific modulators of Salmonella virulence?
1Infectious Disease Unit, Massachusetts General Hospital, Harvard Medical School, Boston 02114.
Abstract:
The regulation of gene expression by the two-component regulatory system PhoP/PhoQ is necessary for Salmonella typhimurium survival within macrophages, defensin resistance, acid resistance, and murine typhoid fever pathogenesis. Salmonella experience multiple environments during mammalian infection and survival requires tightly regulated gene expression. After phagocytosis by macrophages, signal transduction by PhoQ results in the transcription of phoP-activated genes (pags) encoding proteins essential to bacterial survival and virulence. One such gene, pagC, encodes an envelope protein with amino acid similarity to an epithelial cell invasion protein of Yersina enterocolitica, Ail, and a bacteriophage lambda outer membrane protein, Lom. The PhoP and PhoQ proteins can also repress the synthesis of proteins, encoded by phoP repressed genes (prgs), when pags are maximally expressed. If prgs encode receptors for toxic compounds, prg repression may protect the cell within macrophages when pag expression is most necessary. At least one prg locus, prgH, is required for full S. typhimurium mouse virulence. Within the macrophage, different environments may stimulate a switch from pag to prg expression that is necessary to Salmonella survival. prg expression may also be necessary for surviving nonmacrophage environments. Study of the PhoP regulon should lead to the discovery of new virulence factors, increase knowledge of how gene regulation is essential to bacterial virulence, and perhaps lead to the development of better vaccines for typhoid fever.
Insights
The PhoP/PhoQ system regulates Salmonella typhimurium gene expression for survival in host environments. This system controls essential virulence genes, aiding bacterial survival and pathogenesis.
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Gene Regulation
Background:
- Salmonella typhimurium survival within macrophages requires precise gene expression control.
- The two-component regulatory system PhoP/PhoQ is crucial for bacterial adaptation to host environments.
- PhoP/PhoQ regulates genes essential for defensin resistance, acid resistance, and virulence.
Purpose of the Study:
- To investigate the role of the PhoP/PhoQ regulatory system in Salmonella typhimurium virulence.
- To understand the mechanisms of gene expression regulation by PhoP/PhoQ during infection.
- To identify novel virulence factors and potential vaccine targets.
Main Methods:
- Analysis of gene expression patterns under different environmental conditions.
- Identification and characterization of phoP-activated genes (pags) and phoP-repressed genes (prgs).
- Assessment of bacterial survival and virulence in murine models.
Main Results:
- PhoP/PhoQ regulates the transcription of essential survival and virulence genes (pags).
- PhoP/PhoQ can repress genes (prgs) encoding potentially toxic compound receptors, aiding survival in macrophages.
- Specific genes like pagC and prgH are identified as critical for Salmonella virulence.
Conclusions:
- The PhoP/PhoQ system is a key regulator of Salmonella typhimurium virulence and host adaptation.
- Understanding the PhoP regulon can reveal new virulence factors and inform vaccine development.
- Dynamic regulation of pag and prg expression is vital for Salmonella survival in diverse host niches.
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