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TNFα Rescues Dendritic Cell Development in Hematopoietic Stem and Progenitor Cells Lacking C/EBPα
Subramanian Anirudh1, Angelika Rosenberger1, Elke Schwarzenberger2
1Division of Hematology, Medical University of Graz, Auenbruggerplatz 38, A-8036 Graz, Austria.
Insights
The transcription factor C/EBPα is vital for dendritic cell (DC) development from hematopoietic stem and progenitor cells (HSPCs). Tumor necrosis factor-alpha (TNFα) can partially rescue DC formation when C/EBPα is absent.
Area of Science:
- Immunology
- Cell Biology
- Hematopoiesis
Background:
- Dendritic cells (DCs) are essential immune regulators derived from hematopoietic stem and progenitor cells (HSPCs).
- The precise role of the transcription factor C/EBPα in DC development remains incompletely understood.
Purpose of the Study:
- To elucidate the function of C/EBPα in the differentiation of HSPCs into DCs.
- To investigate the molecular mechanisms underlying C/EBPα-mediated DC formation.
Main Methods:
- Utilized a Cebpa-Cre-EYFP reporter mouse model to trace DC lineage.
- Performed in vitro differentiation assays with HSPCs from Cebpa knockout mice.
- Analyzed gene expression and cytokine profiles.
- Assessed DC functionality post-rescue experiments.
Main Results:
- The majority of splenic conventional DCs originate from Cebpa-expressing HSPCs.
- Cebpa knockout HSPCs showed significantly impaired DC formation, particularly affecting monocytic and common dendritic progenitor stages.
- Downregulation of inflammatory cytokines (TNFα, IL-1β) and chemokines was observed in knockout HSPCs.
- In vitro supplementation with TNFα partially restored DC development and functionality in knockout HSPCs.
Conclusions:
- C/EBPα plays a critical role in early dendritic cell development.
- The inflammatory cytokine TNFα can partially compensate for the loss of C/EBPα in DC formation.
Abstract:
Dendritic cells (DCs) are crucial effectors of the immune system, which are formed from hematopoietic stem and progenitor cells (HSPCs) by a multistep process regulated by cytokines and distinct transcriptional mechanisms. C/EBPα is an important myeloid transcription factor, but its role in DC formation is not well defined. Using a CebpaCre-EYFP reporter mouse model, we show that the majority of splenic conventional DCs are derived from Cebpa-expressing HSPCs. Furthermore, HSPCs isolated from Cebpa knockout (KO) mice exhibited a marked reduced ability to form mature DCs after in vitro culture with FLT3L. Differentiation analysis revealed that C/EBPα was needed for the formation of monocytic dendritic progenitors and their transition to common dendritic progenitors. Gene expression analysis and cytokine profiling of culture supernatants showed significant downregulation of inflammatory cytokines, including TNFα and IL-1β as well as distinct chemokines in KO HSPCs. In addition, TNFα-induced genes were among the most dysregulated genes in KO HSPCs. Intriguingly, supplementation of in vitro cultures with TNFα at least partially rescued DC formation of KO HSPCs, resulting in fully functional, mature DCs. In conclusion, these results reveal an important role of C/EBPα in early DC development, which in part can be substituted by the inflammatory cytokine TNFα.
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