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Chronic Salmonella Infection Induced Intestinal Fibrosis
Published on: September 22, 2019
Salmonella flagellin induces tumor necrosis factor alpha in a human promonocytic cell line
F Ciacci-Woolwine1, I C Blomfield, S H Richardson
1Department of Microbiology and Immunology, Wake Forest University Medical Center, Winston-Salem, North Carolina 27157, USA.
Abstract:
During infection of the gastrointestinal tract, salmonellae induce cytokine production and inflammatory responses which are believed to mediate tissue damage in the host. In a previous study, we reported that salmonellae possess the ability to stimulate tumor necrosis factor alpha (TNF-alpha) accumulation in primary human monocytes, as well as in the human promonocytic cell line U38. In this model system, cytokine upregulation is not due to lipopolysaccharide but is mediated by a released protein. In the present study, TnphoA transposon mutagenesis was used to identify the TNF-alpha-inducing factor. A mutant Salmonella strain which lacks the ability to induce TNF-alpha was isolated from a TnphoA library. Genetic analysis of this mutant demonstrated that the hns gene has been interrupted by transposon insertion. The hns gene product is a DNA-binding protein that regulates the expression of a variety of unrelated genes in salmonellae. One of the known targets of histone-like protein H1 is flhDC, the master operon which is absolutely required for flagellar expression. Analysis of other nonflagellated mutant Salmonella strains revealed a correlation between the ability to induce TNF-alpha and the expression of the phase 1 filament subunit protein FliC. Complementation experiments demonstrated that FliC is sufficient to restore the ability of nonflagellated mutant Salmonella strains to upregulate TNF-alpha, whereas the phase 2 protein FljB appears to complement to a lesser extent. In addition, Salmonella FliC can confer the TNF-alpha-inducing phenotype on Escherichia coli, which otherwise lacks the activity. Furthermore, assembly of FliC into complete flagellar structures may not be required for induction of TNF-alpha.
Insights
Salmonella infection triggers tumor necrosis factor alpha (TNF-alpha) via a released protein. This study identifies the flagellar protein FliC as responsible for TNF-alpha induction, even in other bacteria like E. coli.
Area of Science:
- Microbiology
- Immunology
- Molecular Biology
Background:
- Salmonella infections cause gastrointestinal inflammation and tissue damage through cytokine production.
- Previous work identified a Salmonella-secreted protein, not lipopolysaccharide, as the inducer of tumor necrosis factor alpha (TNF-alpha) in human monocytes.
Purpose of the Study:
- To identify the specific Salmonella protein responsible for inducing TNF-alpha production.
- To elucidate the mechanism by which Salmonella mediates inflammatory responses.
Main Methods:
- Utilized TnphoA transposon mutagenesis to screen for Salmonella mutants unable to induce TNF-alpha.
- Conducted genetic analysis of identified mutants, including complementations and heterologous expression in Escherichia coli.
- Correlated TNF-alpha induction with the expression of specific flagellar proteins, FliC and FljB.
Main Results:
- A Salmonella mutant with an interrupted hns gene failed to induce TNF-alpha, implicating the Hns protein's regulatory role.
- The phase 1 flagellar protein FliC was identified as sufficient to restore TNF-alpha induction in non-inducing mutants.
- Salmonella FliC conferred TNF-alpha-inducing activity on Escherichia coli, suggesting FliC is a key effector molecule.
- Flagellar structure assembly was not essential for TNF-alpha induction by FliC.
Conclusions:
- The Salmonella flagellar protein FliC is a primary mediator of TNF-alpha induction during infection.
- FliC-mediated TNF-alpha induction is a conserved mechanism that can be conferred to other bacterial species.
- Understanding this pathway offers insights into Salmonella pathogenesis and host immune responses.

