CpG-ODN-mediated TLR9 innate immune signalling and calcium dyshomeostasis converge on the NFκB inhibitory protein IκBβ to drive IL1α and IL1β expression.
Robyn De DiosLeanna NguyenSankar GhoshSarah McKennaClyde J WrightPublished in: Immunology (2020)
Sterile inflammation contributes to many pathological states associated with mitochondrial injury. Mitochondrial injury disrupts calcium homeostasis and results in the release of CpG-rich mitochondrial DNA. The role of CpG-stimulated TLR9 innate immune signalling and sterile inflammation is well studied; however, how calcium dyshomeostasis affects this signalling is unknown. Therefore, we interrogated the relationship beτween intracellular calcium and CpG-induced TLR9 signalling in murine macrophages. We found that CpG-ODN-induced NFκB-dependent IL1α and IL1β expression was significantly attenuated by both calcium chelation and calcineurin inhibition, a finding mediated by inhibition of degradation of the NFκB inhibitory protein IκBβ. In contrast, calcium ionophore exposure increased CpG-induced IκBβ degradation and IL1α and IL1β expression. These results demonstrate that through its effect on IκBβ degradation, increased intracellular Ca2+ drives a pro-inflammatory TLR9-mediated innate immune response. These results have implications for the study of innate immune signalling downstream of mitochondrial stress and injury.
Keyphrases
- innate immune
- immune response
- oxidative stress
- dna methylation
- diabetic rats
- toll like receptor
- nuclear factor
- mitochondrial dna
- poor prognosis
- inflammatory response
- signaling pathway
- high glucose
- lps induced
- binding protein
- magnetic resonance
- pi k akt
- copy number
- magnetic resonance imaging
- endothelial cells
- long non coding rna
- cell proliferation