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Altered PKR Signalling and C / EBPβ Expression is Associated with HLA-B27 Expression in Monocytic Cells
A S Sahlberg1, M Ruuska1, R A Colbert1
1National Institute for Health and Welfare, Turku, FinlandNIAMS, National Institutes of Health, Bethesda, MD, USADepartment of Medical Microbiology, University of Turku, Turku, Finland.
Abstract:
Infection caused by certain gram-negative bacteria, e.g. Salmonella, can trigger inflammatory joint disease reactive arthritis (ReA). It is suggested that the disease-triggering bacteria or bacterial components persist in patients for an abnormally long time. Development of ReA is strongly associated with tissue antigen HLA-B27. Previously, we reported an enhanced replication of Salmonella enteritidis and altered p38 MAP kinase signalling in HLA-B27-expressing monocytic cells. Here we aimed to investigate the role of HLA-B27 in regulation of double-stranded RNA-activated kinase (PKR)-related signalling in Salmonella-infected or Salmonella lipopolysaccharide (LPS)-stimulated human U937 monocytic cells, as PKR has been reported to modify p38 signalling in Salmonella-infected cells. In cells expressing HLA-B27, PKR is overexpressed and hypophosphorylated, and the expression of transcription factor CCAAT enhancer binding protein beta (C/EBPβ) is increased upon Salmonella infection and LPS stimulation. The expression of C/EBPβ is PKR-dependent in LPS-stimulated mock cells, whereas in LPS-stimulated B27 cells the majority of C/EBPβ is expressed in a PKR-independent manner. Our results show that the expression of HLA-B27 disturbs the PKR-mediated signalling pathway. Moreover, altered signalling is related to misfolding-linked Glu45 in the B pocket of the HLA-B27 heavy chain. We suggest that the expression of HLA-B27 HCs modulates the intracellular environment of monocyte/macrophages and the mechanisms that are important in eliminating intracellular S. enteritidis by altering the intracellular signalling. This phenomenon is at least partly dependent on the misfolding feature of the B27 molecule. These observations offer a novel mechanism by which HLA-B27 may modulate inflammatory response induced by ReA-triggering bacteria.
Insights
Human leukocyte antigen B27 (HLA-B27) expression alters double-stranded RNA-activated kinase (PKR) signaling pathways in Salmonella-infected cells. This disruption, linked to HLA-B27
Area of Science:
- Immunology
- Microbiology
- Molecular Biology
Background:
- Reactive arthritis (ReA) is an inflammatory joint disease triggered by gram-negative bacterial infections like Salmonella.
- ReA development is strongly associated with the human leukocyte antigen B27 (HLA-B27) tissue antigen.
- Persistent bacteria or bacterial components are implicated in ReA pathogenesis.
Purpose of the Study:
- To investigate the role of HLA-B27 in regulating double-stranded RNA-activated kinase (PKR)-related signaling pathways.
- To examine the impact of HLA-B27 on Salmonella-infected or lipopolysaccharide (LPS)-stimulated human monocytic cells (U937).
Main Methods:
- Utilized human U937 monocytic cells expressing HLA-B27.
- Infected cells with Salmonella or stimulated with Salmonella lipopolysaccharide (LPS).
- Analyzed the expression and phosphorylation status of PKR and CCAAT enhancer binding protein beta (C/EBPβ).
Main Results:
- HLA-B27 expression led to overexpression and hypophosphorylation of PKR in infected/stimulated cells.
- Salmonella infection and LPS stimulation increased C/EBPβ expression in HLA-B27 expressing cells.
- C/EBPβ expression was PKR-dependent in mock cells but largely PKR-independent in HLA-B27 expressing cells upon LPS stimulation.
Conclusions:
- HLA-B27 expression significantly disturbs PKR-mediated signaling pathways.
- Altered signaling is associated with misfolding of the HLA-B27 heavy chain (Glu45 in the B pocket).
- HLA-B27 modulates the intracellular environment and bacterial elimination mechanisms in monocytes/macrophages, potentially via misfolding-dependent signaling alterations.
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