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Updated: Aug 30, 2026

Epithelial Cell Infection Analyses with Shigella
Published on: February 9, 2024
The ShiA protein encoded by the Shigella flexneri SHI-2 pathogenicity island attenuates inflammation
Molly A Ingersoll1, Jeremy E Moss, Yvette Weinrauch
1Max Planck Institute for Infection Biology, 21/22 Schumannstrasse, 10117 Berlin, Germany.
Abstract:
Shigella spp. are the aetiologic agents of dysentery, a severe diarrhoeal syndrome characterized by acute inflammation in the colon. The inflammatory response, which includes recruitment of polymorphonuclear leukocytes (PMN), damages the colonic mucosa and exacerbates the infection. Shigella encodes a pathogenicity island (PAI), SHI-2, which is localized in a region of the chromosome linked to the induction of inflammation. Surprisingly, SHI-2 deletion mutants induce a stronger inflammatory response than wild-type Shigella as measured by increased villus blunting, increased PMN infiltration and induction of apoptosis in a rabbit ileal loop model of shigellosis. Mutational analysis mapped the hyper-inflammatory phenotype to a single gene, shiA. Similar to SHI-2 deletion mutants, infection with a shiA mutant strain induces dramatically elevated levels of inflammation when compared to the wild-type strain. Furthermore, infection with a wild-type strain containing multiple copies of shiA results in fewer infiltrating PMN and apoptotic cells, as well as preservation of a normal villus architecture at the site of infection, thus acting in a dominant fashion over the pro-inflammatory mechanisms of Shigella. The molecular mechanism of action of ShiA is independent of any in vitro phenotype associated with Shigella virulence. Our data suggest that ShiA allows Shigella to attenuate the host inflammatory response in a novel manner.
Insights
Shigella bacteria cause dysentery through inflammation. A novel gene, shiA, was found to reduce this host inflammation, offering a new therapeutic target for Shigella infections.
Area of Science:
- Microbiology
- Immunology
- Pathogenesis
Background:
- Shigella spp. cause dysentery, a severe colonic inflammation.
- Inflammatory responses, including polymorphonuclear leukocyte (PMN) recruitment, worsen Shigella infections.
- The SHI-2 pathogenicity island is linked to Shigella-induced inflammation.
Purpose of the Study:
- To investigate the role of the SHI-2 pathogenicity island in Shigella-induced inflammation.
- To identify specific genes within SHI-2 responsible for modulating the host inflammatory response.
Main Methods:
- Utilized a rabbit ileal loop model of shigellosis.
- Generated and analyzed Shigella SHI-2 deletion mutants and shiA mutants.
- Assessed inflammatory markers including villus blunting, PMN infiltration, and apoptosis.
Main Results:
- SHI-2 deletion mutants induced a stronger inflammatory response than wild-type Shigella.
- Mutational analysis identified the gene shiA as responsible for hyper-inflammation.
- Overexpression of shiA attenuated the host inflammatory response, reducing PMN infiltration and apoptosis.
Conclusions:
- The gene shiA plays a crucial role in attenuating the host inflammatory response during Shigella infection.
- ShiA represents a novel mechanism by which Shigella modulates host immunity.
- Targeting shiA could offer new therapeutic strategies for managing Shigella-induced dysentery.
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