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Published on: July 15, 2016
Ablation of cDC2 development by triple mutations within the Zeb2 enhancer
Tian-Tian Liu1, Sunkyung Kim1, Pritesh Desai2
1Department of Pathology and Immunology, Washington University in St Louis, School of Medicine, St Louis, MO, USA.
Abstract:
The divergence of the common dendritic cell progenitor1-3 (CDP) into the conventional type 1 and type 2 dendritic cell (cDC1 and cDC2, respectively) lineages4,5 is poorly understood. Some transcription factors act in the commitment of already specified progenitors-such as BATF3, which stabilizes Irf8 autoactivation at the +32 kb Irf8 enhancer4,6-but the mechanisms controlling the initial divergence of CDPs remain unknown. Here we report the transcriptional basis of CDP divergence and describe the first requirements for pre-cDC2 specification. Genetic epistasis analysis7 suggested that Nfil3 acts upstream of Id2, Batf3 and Zeb2 in cDC1 development but did not reveal its mechanism or targets. Analysis of newly generated NFIL3 reporter mice showed extremely transient NFIL3 expression during cDC1 specification. CUT&RUN and chromatin immunoprecipitation followed by sequencing identified endogenous NFIL3 binding in the -165 kb Zeb2 enhancer8 at three sites that also bind the CCAAT-enhancer-binding proteins C/EBPα and C/EBPβ. In vivo mutational analysis using CRISPR-Cas9 targeting showed that these NFIL3-C/EBP sites are functionally redundant, with C/EBPs supporting and NFIL3 repressing Zeb2 expression at these sites. A triple mutation of all three NFIL3-C/EBP sites ablated Zeb2 expression in myeloid, but not lymphoid progenitors, causing the complete loss of pre-cDC2 specification and mature cDC2 development in vivo. These mice did not generate T helper 2 (TH2) cell responses against Heligmosomoides polygyrus infection, consistent with cDC2 supporting TH2 responses to helminths9-11. Thus, CDP divergence into cDC1 or cDC2 is controlled by competition between NFIL3 and C/EBPs at the -165 kb Zeb2 enhancer.
Insights
The study reveals transcription factors NFIL3 and C/EBPs compete at the Zeb2 enhancer to control dendritic cell progenitor divergence. This competition is crucial for specifying type 2 dendritic cells (cDC2s) and their role in T helper 2 cell responses.
Area of Science:
- Immunology
- Developmental Biology
- Transcriptional Regulation
Background:
- The differentiation pathways of common dendritic cell progenitors (CDPs) into cDC1 and cDC2 lineages are not fully understood.
- While transcription factors like BATF3 are known to stabilize later stages of cDC1 commitment, the initial mechanisms driving CDP divergence remain elusive.
Purpose of the Study:
- To elucidate the transcriptional mechanisms governing the divergence of common dendritic cell progenitors (CDPs).
- To identify the initial requirements for the specification of pre-cDC2 cells.
Main Methods:
- Analysis of NFIL3 reporter mice to track NFIL3 expression dynamics.
- CUT&RUN and ChIP-seq to identify endogenous NFIL3 binding sites.
- CRISPR-Cas9 mediated in vivo mutational analysis of identified regulatory elements.
- Assessment of dendritic cell development and T helper 2 cell responses in mutant mice.
Main Results:
- NFIL3 transiently binds to the Zeb2 enhancer, where it competes with C/EBPα and C/EBPβ.
- NFIL3 acts as a repressor, while C/EBPs act as supporters of Zeb2 expression at these sites.
- Disruption of NFIL3-C/EBP binding sites leads to loss of Zeb2 expression in myeloid progenitors.
- This results in a complete failure of pre-cDC2 specification and mature cDC2 development, impairing T helper 2 responses.
Conclusions:
- CDP divergence into cDC1 and cDC2 lineages is regulated by a competitive mechanism at the Zeb2 enhancer involving NFIL3 and C/EBPs.
- This regulatory axis is essential for the development of cDC2s and their function in orchestrating T helper 2 immune responses.
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