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Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
c-KIT signaling is targeted by pathogenic Yersinia to suppress the host immune response
Sofiya N Micheva-Viteva, Yulin Shou, Kristy L Nowak-Lovato
1Bioscience Division, Los Alamos National Laboratory, Los Alamos, NM 87544, USA. ehong@lanl.gov.
Background:
The pathogenic Yersinia species exhibit a primarily extracellular lifestyle through manipulation of host signaling pathways that regulate pro-inflammatory gene expression and cytokine release. To identify host genes that are targeted by Yersinia during the infection process, we performed an RNA interference (RNAi) screen based on recovery of host NF-κB-mediated gene activation in response to TNF-α stimulation upon Y. enterocolitica infection.
Results:
We screened shRNAs against 782 genes in the human kinome and 26 heat shock genes, and identified 19 genes that exhibited ≥ 40% relative increase in NF-κB reporter gene activity. The identified genes function in multiple cellular processes including MAP and ERK signaling pathways, ion channel activity, and regulation of cell growth. Pre-treatment with small molecule inhibitors specific for the screen hits c-KIT and CKII recovered NF-κB gene activation and/or pro-inflammatory TNF-α cytokine release in multiple cell types, in response to either Y. enterocolitica or Y. pestis infection.
Conclusions:
We demonstrate that pathogenic Yersinia exploits c-KIT signaling in a T3SS-dependent manner to downregulate expression of transcription factors EGR1 and RelA/p65, and pro-inflammatory cytokines. This study is the first major functional genomics RNAi screen to elucidate virulence mechanisms of a pathogen that is primarily dependent on extracellular-directed immunomodulation of host signaling pathways for suppression of host immunity.
Insights
Pathogenic Yersinia bacteria suppress host immunity by targeting c-KIT signaling. This study identified key host genes involved in Yersinia virulence, revealing new therapeutic targets for infectious diseases.
Area of Science:
- Microbiology
- Immunology
- Genomics
Background:
- Pathogenic Yersinia species primarily live outside cells, manipulating host signaling to control inflammation.
- Understanding host genes targeted by Yersinia is crucial for identifying virulence mechanisms.
Purpose of the Study:
- To identify host genes targeted by Yersinia during infection.
- To elucidate Yersinia's extracellular immunomodulation strategies.
Main Methods:
- Conducted an RNA interference (RNAi) screen targeting 782 human kinome genes and 26 heat shock genes.
- Measured recovery of NF-κB-mediated gene activation in response to TNF-α stimulation after Yersinia enterocolitica infection.
Main Results:
- Identified 19 genes that significantly increased NF-κB reporter gene activity.
- Discovered targeted genes involved in MAP/ERK signaling, ion channels, and cell growth regulation.
- Inhibitors of c-KIT and CKII restored NF-κB activation and TNF-α release during Yersinia infection.
Conclusions:
- Pathogenic Yersinia utilizes c-KIT signaling, dependent on the Type III Secretion System (T3SS), to suppress EGR1, RelA/p65, and pro-inflammatory cytokines.
- This functional genomics screen is the first to reveal pathogen virulence mechanisms focused on extracellular immunomodulation.
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