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Published on: January 12, 2020
Salmonella effector SpvB interferes with intracellular iron homeostasis via regulation of transcription factor NRF2
Sidi Yang1, Qifeng Deng1, Lanqing Sun1
1Department of Medical Microbiology, Medical College, Soochow University, Suzhou, China.
Abstract:
Iron is a necessary nutrient for humans and nearly all bacterial species. During Salmonella infection, macrophages limit the availability of iron to intracellular pathogens in one of the central components of nutritional immunity. However, Salmonella also have mechanisms to interfere with the antimicrobial effect of host iron withdrawal and meet their own nutrient requirements by scavenging iron from the host. Here, we provide what is, to our knowledge, the first report that SpvB, a pSLT-encoded cytotoxic protein whose function is associated with the intracellular stage of salmonellosis, perturbs macrophage iron metabolism, thereby facilitating Salmonella survival and intracellular replication. In investigating the underlying mechanism, we observed that the Salmonella effector SpvB down-regulated nuclear factor erythroid-derived 2-related factor 2 (NRF2), and its C-terminal domain was necessary and sufficient for NRF2 degradation via the proteasome pathway. Decreased NRF2 expression in the nucleus resulted in a decrease in its transcriptional target ferroportin, encoding the sole macrophage iron exporter, thus ultimately decreasing iron efflux and increasing the intracellular iron content. Additionally, SpvB contributes to the pathogenesis of Salmonella including severe serum hypoferremia, increased splenic and hepatic bacterial burden, and inflammatory injury in vivo. Together, our observations uncovered a novel contribution of SpvB to Salmonella pathology via interference with host intracellular iron metabolism.-Yang, S., Deng, Q., Sun, L., Dong, K., Li, Y., Wu, S., Huang, R. Salmonella effector SpvB interferes with intracellular iron homeostasis via regulation of transcription factor NRF2.
Insights
Salmonella infection disrupts host iron by down-regulating NRF2, a transcription factor controlling iron exporter ferroportin. This increases intracellular iron, aiding bacterial survival and pathogenesis.
Area of Science:
- Microbiology
- Immunology
- Molecular Biology
Background:
- Iron is vital for human and bacterial cells.
- Macrophages limit iron during Salmonella infection as part of nutritional immunity.
- Salmonella employs mechanisms to acquire host iron and counteract iron restriction.
Purpose of the Study:
- To investigate the role of Salmonella effector SpvB in host iron metabolism.
- To elucidate the mechanism by which SpvB affects intracellular iron levels.
- To understand SpvB's contribution to Salmonella pathogenesis.
Main Methods:
- Investigated SpvB's effect on macrophage iron metabolism.
- Assessed NRF2 (nuclear factor erythroid-derived 2-related factor 2) regulation by SpvB.
- Analyzed ferroportin expression and iron efflux.
- Evaluated SpvB's role in Salmonella pathogenesis in vivo.
Main Results:
- SpvB down-regulates NRF2, leading to its proteasomal degradation.
- SpvB reduces nuclear NRF2, decreasing ferroportin expression.
- This results in decreased iron efflux and increased intracellular iron in macrophages.
- SpvB contributes to hypoferremia, increased bacterial burden, and inflammation in vivo.
Conclusions:
- Salmonella effector SpvB interferes with host intracellular iron homeostasis.
- SpvB achieves this by regulating the transcription factor NRF2.
- This mechanism facilitates Salmonella survival and replication within host cells.
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