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Updated: Jul 26, 2025

Characterizing Salmonella Typhimurium-induced Septic Peritonitis in Mice
Published on: July 29, 2022
Salmonella enterica serovar Typhi uses two type 3 secretion systems to replicate in human macrophages and to colonize
Abstract:
Salmonella enterica serovar Typhi ( S. Typhi) is a human-restricted pathogen that replicates in macrophages. In this study, we investigated the roles of the S. Typhi Type 3 secretion systems (T3SSs) encoded on Salmonella Pathogenicity Islands (SPI) -1 (T3SS-1) and -2 (T3SS-2) during human macrophage infection. We found that mutants of S . Typhi deficient for both T3SSs were defective for intramacrophage replication as measured by flow cytometry, viable bacterial counts, and live time-lapse microscopy. T3SS-secreted proteins PipB2 and SifA contributed to S. Typhi replication and were translocated into the cytosol of human macrophages through both T3SS-1 and -2, demonstrating functional redundancy for these secretion systems. Importantly, an S . Typhi mutant strain that is deficient for both T3SS-1 and -2 was severely attenuated in the ability to colonize systemic tissues in a humanized mouse model of typhoid fever. Overall, this study establishes a critical role for S. Typhi T3SSs during its replication within human macrophages and during systemic infection of humanized mice.
Importance:
Salmonella enterica serovar Typhi is a human-restricted pathogen that causes typhoid fever. Understanding the key virulence mechanisms that facilitate S. Typhi replication in human phagocytes will enable rational vaccine and antibiotic development to limit spread of this pathogen. While S. Typhimurium replication in murine models has been studied extensively, there is limited information available about S. Typhi replication in human macrophages, some of which directly conflicts with findings from S. Typhimurium murine models. This study establishes that both of S. Typhi's two Type 3 Secretion Systems (T3SS-1 and -2) contribute to intramacrophage replication and virulence.
Insights
Salmonella Typhi uses two Type 3 Secretion Systems (T3SS-1 and T3SS-2) to replicate inside human macrophages. Both systems are crucial for Salmonella Typhi virulence and colonization during typhoid fever infection.
Area of Science:
- Microbiology
- Immunology
- Infectious Diseases
Background:
- Salmonella enterica serovar Typhi (S. Typhi) is a human-specific pathogen causing typhoid fever.
- Understanding S. Typhi replication in human macrophages is key for developing vaccines and antibiotics.
- Limited data exists on S. Typhi replication in human macrophages compared to S. Typhimurium in mice.
Conclusions:
- Both S. Typhi T3SS-1 and T3SS-2 are critical for intramacrophage replication.
- Functional redundancy exists between T3SS-1 and T3SS-2 in translocating effector proteins.
- S. Typhi T3SSs play a vital role in systemic infection and colonization during typhoid fever.

