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Updated: Sep 23, 2025

Repressing Gene Transcription by Redirecting Cellular Machinery with Chemical Epigenetic Modifiers
Published on: September 20, 2018
C/EBPδ-induced epigenetic changes control the dynamic gene transcription of S100a8 and S100a9
Saskia-Larissa Jauch-Speer1, Marisol Herrera-Rivero2, Nadine Ludwig3
1Institute of Immunology, University of Münster, Münster, Germany.
Insights
The transcription factor C/EBPδ is a key regulator of S100A8 and S100A9 inflammatory proteins. This finding offers a new target for treating inflammatory diseases driven by S100A8/S100A9 overexpression.
Area of Science:
- Immunology
- Molecular Biology
- Genetics
Background:
- S100A8 and S100A9 are abundant pro-inflammatory alarmins in myeloid cells.
- Their expression is dynamically regulated and poorly understood, especially during differentiation.
Purpose of the Study:
- To identify molecular mechanisms regulating S100a8 and S100a9 gene expression.
- To investigate the role of C/EBPδ in controlling these genes and associated inflammation.
Main Methods:
- Genome-wide CRISPR/Cas9 knockout screening in murine monocytes.
- Mouse model of acute lung inflammation.
- Analysis of human monocyte subpopulations in cardiovascular patients.
- ChIP-seq and epigenetic analysis (H3K27me3 demethylation).
Main Results:
- C/EBPδ was identified as a central transcription factor for S100a8 and S100a9 expression.
- C/EBPδ deficiency reduced S100A8/A9 levels, neutrophil recruitment, and cytokine release in vivo.
- ATF3 and FBXW7 act as antagonists to C/EBPδ.
- Clinical relevance confirmed in human monocytes.
- C/EBPδ binds S100a8/a9 promoters and mediates JMJD3-dependent H3K27me3 demethylation.
Conclusions:
- C/EBPδ is a novel, critical regulator of S100a8 and S100a9.
- The C/EBPδ-S100A8/A9 regulatory axis is important in inflammation.
- C/EBPδ is a potential therapeutic target for inflammatory conditions involving S100A8/S100A9 overexpression.
Abstract:
The proinflammatory alarmins S100A8 and S100A9 are among the most abundant proteins in neutrophils and monocytes but are completely silenced after differentiation to macrophages. The molecular mechanisms of the extraordinarily dynamic transcriptional regulation of S100a8 and S100a9 genes, however, are only barely understood. Using an unbiased genome-wide CRISPR/Cas9 knockout (KO)-based screening approach in immortalized murine monocytes, we identified the transcription factor C/EBPδ as a central regulator of S100a8 and S100a9 expression. We showed that S100A8/A9 expression and thereby neutrophil recruitment and cytokine release were decreased in C/EBPδ KO mice in a mouse model of acute lung inflammation. S100a8 and S100a9 expression was further controlled by the C/EBPδ antagonists ATF3 and FBXW7. We confirmed the clinical relevance of this regulatory network in subpopulations of human monocytes in a clinical cohort of cardiovascular patients. Moreover, we identified specific C/EBPδ-binding sites within S100a8 and S100a9 promoter regions, and demonstrated that C/EBPδ-dependent JMJD3-mediated demethylation of H3K27me3 is indispensable for their expression. Overall, our work uncovered C/EBPδ as a novel regulator of S100a8 and S100a9 expression. Therefore, C/EBPδ represents a promising target for modulation of inflammatory conditions that are characterized by S100a8 and S100a9 overexpression.
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