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Sustained stabilization of Interleukin-8 mRNA in human macrophages
Linah Mahmoud1, Fatma Al-Enezi2, Maher Al-Saif1
1Molecular Biomedicine Program; King Faisal Specialist Hospital and Research Center; Riyadh, Saudi Arabia.
Abstract:
The mRNAs of most inflammatory mediators are short-lived due to AU-rich elements (AREs) in their 3'-untranslated regions. AREs ensure a low basal level of expression during homeostasis and a transient nature of expression during the inflammatory response. Here, we report that the mRNA of the pro-inflammatory chemokine IL-8, which contains an archetypal ARE, is unexpectedly constitutively abundant and highly stable in primary human monocytes and macrophages. Using the pre-monocyte-like THP-1 cell line that can differentiate into macrophage-like cells, we show that a low level of unstable IL-8 mRNA in undifferentiated cells (half-life<30 min) becomes constitutively elevated and the mRNA is dramatically stabilized in differentiated THP-1 cells with a half-life of more than 15 h similar to primary monocytes and macrophages. In contrast, the level and stability of TNF-α mRNA also containing an ARE is only slightly affected by differentiation; it remains low and unstable in primary macrophages and differentiated THP-1 cells with an estimated half-life of less than 20 min. This differentiation-dependent stabilization of IL-8 mRNA is p38 MAPK-independent and is probably coupled with reduced protein translation. Reporter assays in THP-1 cells suggest that the ARE alone is not sufficient for the constitutive stabilization in macrophage-like cells and imply an effect of the natural biogenesis of the transcript on the stabilization of the mature form. We present a novel, cell type-dependent sustained stabilization of an ARE-containing mRNA with similarities to situations found in disease.
Insights
Most inflammatory mediator mRNAs are unstable due to AU-rich elements (AREs). However, Interleukin-8 (IL-8) mRNA is unexpectedly stable in human monocytes and macrophages, unlike other ARE-containing mRNAs.
Area of Science:
- Immunology
- Molecular Biology
- Gene Regulation
Background:
- AU-rich elements (AREs) in 3'-untranslated regions typically destabilize inflammatory mediator mRNAs.
- This ensures transient expression during inflammation and low basal levels during homeostasis.
Purpose of the Study:
- To investigate the stability of pro-inflammatory chemokine mRNA, specifically Interleukin-8 (IL-8), in immune cells.
- To understand the mechanisms underlying IL-8 mRNA stability, particularly in differentiated macrophages.
Main Methods:
- Utilized the THP-1 cell line, differentiating it into macrophage-like cells.
- Measured mRNA half-life using techniques like reporter assays.
- Assessed the role of p38 MAPK signaling pathway.
Main Results:
- IL-8 mRNA, containing an ARE, is constitutively abundant and highly stable (half-life >15 h) in differentiated THP-1 cells and primary human monocytes/macrophages.
- In contrast, TNF-α mRNA, also with an ARE, remains unstable (half-life <20 min) in these cells.
- Differentiation-dependent stabilization of IL-8 mRNA is independent of p38 MAPK and may involve reduced protein translation and transcript biogenesis.
Conclusions:
- IL-8 mRNA exhibits unique, cell type-dependent stabilization in macrophages, diverging from typical ARE-mediated decay.
- This stabilization mechanism is distinct from that of TNF-α mRNA and suggests complex post-transcriptional regulation.
- The findings reveal a novel stabilization pathway for ARE-containing mRNA with potential implications for diseases involving chronic inflammation.

