The human MIF polymorphism CATT 7 enhances pro-inflammatory macrophage polarization in a clinically relevant model of allergic airway inflammation.
Hazel DunbarIan J HawthorneEoin N McNameeMichelle E ArmstrongSeamas C DonnellyKaren EnglishPublished in: FASEB journal : official publication of the Federation of American Societies for Experimental Biology (2024)
High level expression of the pro-inflammatory cytokine macrophage migration inhibitory factor (MIF) has been associated with severe asthma. The role of MIF and its functional promotor polymorphism in innate immune training is currently unknown. Using novel humanized CATT 7 MIF mice, this study is the first to investigate the effect of MIF on bone marrow-derived macrophage (BMDM) memory after house dust mite (HDM) challenge. CATT 7 BMDMs demonstrated a significant primed increase in M1 markers following HDM and LPS stimulation, compared to naive mice. This M1 signature was found to be MIF-dependent, as administration of a small molecule MIF inhibitor, SCD-19, blocked the induction of this pro-inflammatory M1-like phenotype in BMDMs from CATT 7 mice challenged with HDM. Training naive BMDMs in vitro with HDM for 24 h followed by a rest period and subsequent stimulation with LPS led to significantly increased production of the pro-inflammatory cytokine TNFα in BMDMs from CATT 7 mice but not WT mice. Addition of the pan methyltransferase inhibitor MTA before HDM training significantly abrogated this effect in BMDMs from CATT 7 mice, suggesting that HDM-induced training is associated with epigenetic remodelling. These findings suggest that trained immunity induced by HDM is under genetic control, playing an important role in asthma patients with the high MIF genotypes (CATT 6/7/8 ).
Keyphrases
- high fat diet induced
- small molecule
- adipose tissue
- gene expression
- poor prognosis
- hiv infected
- innate immune
- rheumatoid arthritis
- wild type
- mesenchymal stem cells
- chronic obstructive pulmonary disease
- insulin resistance
- metabolic syndrome
- type diabetes
- high glucose
- genome wide
- anti inflammatory
- bone marrow
- heavy metals
- long non coding rna
- induced pluripotent stem cells
- health risk
- binding protein