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MicroRNA networks associated with active systemic juvenile idiopathic arthritis regulate CD163 expression and
Thuy Do1, Rachel Tan1,2, Mark Bennett2
1Division of Rheumatology, Department of Pediatrics, University of Cincinnati College of Medicine, Cincinnati, Ohio, USA.
Abstract:
Systemic juvenile idiopathic arthritis (SJIA) is a severe childhood arthropathy with features of autoinflammation. Monocytes and macrophages in SJIA have a complex phenotype with both pro- and anti-inflammatory properties that combine features of several well characterized in vitro conditions used to activate macrophages. An important anti-inflammatory phenotype is expression of CD163, a scavenger receptor that sequesters toxic pro-inflammatory complexes that is highly expressed in both active SJIA and macrophage activation syndrome (MAS). CD163 is most strongly up-regulated by IL-10 (M(IL-10)), and not by other conditions that reflect features seen in SJIA monocytes such as M(LPS+IC). MicroRNA plays key roles in integrating cellular signals such as those in macrophage polarization, and as such we hypothesize microRNAs regulate macrophage functional responses in SJIA including CD163 expression. We find that 2 microRNAs previously found to be elevated in active SJIA, miR-125a-5p and miR-181c, significantly reduced macrophage CD163 expression through 2 distinct mechanisms. Neither microRNA was elevated in M(IL-10) with robust CD163 expression, but were instead induced in M(LPS+IC) where they restricted CD163 mRNA expression. Mir-181 species directly targeted CD163 mRNA for degradation. In contrast, miR-125a-5p functions indirectly, as transcriptome analysis of miR-125a-5p overexpression identified "cytokine-cytokine receptor interactions" as the most significantly repressed gene pathway, including decreased IL10RA, required for IL-10-mediated CD163 expression. Finally, overexpression of miR-181c inhibited CD163 anti-inflammatory responses to hemoglobin or high mobility group box 1 (HMGB1) complexes. Together, these data show that microRNA utilizes multiple mechanisms to integrate well-characterized polarization phenotypes and regulate macrophage functional properties seen in SJIA.
Insights
MicroRNAs miR-125a-5p and miR-181c regulate macrophage CD163 expression in systemic juvenile idiopathic arthritis (SJIA). These microRNAs impact anti-inflammatory responses by distinct mechanisms, offering insights into SJIA pathogenesis.
Area of Science:
- Immunology
- Molecular Biology
- Pediatric Rheumatology
Background:
- Systemic juvenile idiopathic arthritis (SJIA) is a severe autoinflammatory childhood disease.
- Monocytes and macrophages in SJIA exhibit complex pro- and anti-inflammatory phenotypes.
- CD163, a scavenger receptor, is a key marker of anti-inflammatory macrophage phenotype (M(IL-10)) and is elevated in active SJIA and macrophage activation syndrome (MAS).
Purpose of the Study:
- To investigate the role of microRNAs in regulating macrophage functional responses in SJIA.
- To determine if specific microRNAs, previously found elevated in SJIA, influence CD163 expression.
- To elucidate the mechanisms by which microRNAs modulate macrophage polarization and anti-inflammatory functions in SJIA.
Main Methods:
- Analysis of microRNA expression in SJIA patient samples.
- In vitro experiments involving macrophage polarization (M(IL-10) and M(LPS+IC)).
- Overexpression of miR-125a-5p and miR-181c in macrophages.
- Assessment of CD163 mRNA and protein levels.
- Target gene analysis and pathway enrichment analysis (cytokine-cytokine receptor interactions).
- Evaluation of anti-inflammatory responses to hemoglobin and HMGB1 complexes.
Main Results:
- Two microRNAs, miR-125a-5p and miR-181c, significantly reduced macrophage CD163 expression in SJIA models.
- miR-181c directly targeted CD163 mRNA for degradation.
- miR-125a-5p indirectly reduced CD163 expression by repressing the IL-10 signaling pathway (including IL10RA).
- miR-181c overexpression inhibited anti-inflammatory responses to hemoglobin and HMGB1 complexes.
Conclusions:
- MicroRNAs play a crucial role in integrating macrophage polarization signals in SJIA.
- miR-125a-5p and miR-181c differentially regulate CD163 expression through distinct molecular mechanisms.
- These findings highlight microRNAs as key regulators of macrophage function and potential therapeutic targets in SJIA.
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