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High-throughput Assay to Phenotype Salmonella enterica Typhimurium Association, Invasion, and Replication in Macrophages
Published on: August 11, 2014
TamAB is regulated by PhoPQ and functions in outer membrane homeostasis during Salmonella pathogenesis
Rouhallah Ramezanifard1, Yekaterina A Golubeva1, Alexander D Palmer1
1Department of Microbiology, University of Illinois at Urbana Champaign , Urbana, Illinois, USA.
Abstract:
Salmonella survive and replicate in macrophages, which normally kill bacteria by exposing them to a variety of harsh conditions and antimicrobial effectors, many of which target the bacterial cell envelope. The PhoPQ two-component system responds to the phagosome environment and induces factors that protect the outer membrane, allowing adaptation and growth in the macrophage. We show that PhoPQ induces the transcription of the tamAB operon both in vitro and in macrophages. The TamA protein is structurally similar to BamA, an essential protein in the Bam complex that assembles β-barrel proteins in the outer membrane, while TamB is an AsmA-family protein implicated in lipid transport between the inner and outer membranes. We show that the Bam machinery is stressed in vitro under low Mg2+, low pH conditions that mimic the phagosome. Not surprisingly, mutations affecting Bam function confer significant virulence defects. Although loss of TamAB alone confers no virulence defect, a tamAB deletion confers a synthetic phenotype in bam mutant backgrounds in animals and macrophages, and in vitro upon treatment with vancomycin or sodium dodecyl sulfate. Mutations affecting YhdP, which functions in partial redundancy with TamB, also confer synthetic phenotypes with bam mutations in the animal, but this interaction is not evident in vitro. Thus, in the harsh phagocytic environment of the macrophage, the outer membrane Bam machinery is compromised, and the TamAB system, and perhaps other PhoPQ-regulated factors, is induced to compensate. It is most likely that TamAB and other systems assist the Bam complex indirectly by affecting outer membrane properties. IMPORTANCE The TamAB system has been implicated in both outer membrane protein localization and phospholipid transport between the inner and outer membranes. We show that the β-barrel protein assembly complex, Bam, is stressed under conditions thought to mimic the macrophage phagosome. TamAB expression is controlled by the PhoPQ two-component system and induced in macrophages. This system somehow compensates for the Bam complex as evidenced by the fact that mutations affecting the two systems confer synthetic phenotypes in animals, macrophages, and in vitro in the presence of vancomycin or SDS. This study has implications concerning the role of TamAB in outer membrane homeostasis. It also contributes to our understanding of the systems necessary for Salmonella to adapt and reproduce within the macrophage phagosome.
Insights
Salmonella adapts to macrophages by inducing the TamAB system to compensate for the stressed outer membrane protein assembly complex, Bam. This PhoPQ-regulated system is crucial for bacterial survival in the harsh phagosome environment.
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Molecular Biology
Background:
- Salmonella survives within macrophages, a challenging environment that normally eliminates bacteria.
- The PhoPQ two-component system regulates Salmonella's adaptation to the phagosome, protecting its outer membrane.
- The outer membrane protein assembly complex (Bam) is essential for bacterial outer membrane integrity.
Purpose of the Study:
- To investigate the role of the PhoPQ-regulated tamAB operon in Salmonella adaptation within macrophages.
- To determine the functional relationship between the TamAB system and the Bam complex under phagosome-mimicking conditions.
Main Methods:
- Analysis of tamAB operon transcription in vitro and in macrophages.
- Construction and phenotypic analysis of Salmonella mutants lacking tamAB or affecting Bam function.
- Assessment of bacterial survival and virulence in animal models and macrophage infections.
Main Results:
- PhoPQ induces tamAB transcription in response to phagosome-like conditions (low Mg2+, low pH).
- The Bam machinery is compromised under these conditions, and tamAB deletion exacerbates bam mutant defects.
- TamAB compensates for Bam complex stress, particularly under conditions mimicking the macrophage phagosome.
Conclusions:
- The TamAB system, regulated by PhoPQ, is induced in macrophages to compensate for compromised Bam function.
- TamAB likely assists the Bam complex indirectly by modulating outer membrane properties for Salmonella survival.
- This study highlights the importance of TamAB in maintaining outer membrane homeostasis and Salmonella virulence.
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