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Published on: May 31, 2018
EGR1 is a gatekeeper of inflammatory enhancers in human macrophages
Marco Trizzino1, Avery Zucco1, Sandra Deliard1
1The Wistar Institute, 3601 Spruce street, Philadelphia, PA 19104, USA.
Abstract:
Monocytes and monocyte-derived macrophages originate through a multistep differentiation process. First, hematopoietic stem cells generate lineage-restricted progenitors that eventually develop into peripheral, postmitotic monocytes. Second, blood-circulating monocytes undergo differentiation into macrophages, which are specialized phagocytic cells capable of tissue infiltration. While monocytes mediate some level of inflammation and cell toxicity, macrophages boast the widest set of defense mechanisms against pathogens and elicit robust inflammatory responses. Here, we analyze the molecular determinants of monocytic and macrophagic commitment by profiling the EGR1 transcription factor. EGR1 is essential for monopoiesis and binds enhancers that regulate monocytic developmental genes such as CSF1R However, differentiating macrophages present a very different EGR1 binding pattern. We identify novel binding sites of EGR1 at a large set of inflammatory enhancers, even in the absence of its binding motif. We show that EGR1 repressive activity results in suppression of inflammatory genes and is mediated by the NuRD corepressor complex.
Insights
The transcription factor EGR1 is crucial for monocyte development and macrophage differentiation. It regulates inflammatory genes, suppressing them in macrophages via the NuRD complex.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Monocytes differentiate into macrophages, key phagocytic cells in immune defense.
- Understanding the molecular regulation of this differentiation is vital for immunology.
Purpose of the Study:
- To investigate the role of the EGR1 transcription factor in monocyte and macrophage differentiation.
- To identify molecular mechanisms governing monocytic and macrophagic commitment.
Main Methods:
- Profiling EGR1 binding patterns during monocyte and macrophage differentiation.
- Analyzing EGR1's regulatory activity on specific genes like CSF1R.
- Investigating the involvement of the NuRD corepressor complex.
Main Results:
- EGR1 is essential for monopoiesis, regulating genes like CSF1R.
- Differentiating macrophages show distinct EGR1 binding patterns, including novel sites.
- EGR1 suppresses inflammatory genes in macrophages, mediated by the NuRD complex.
Conclusions:
- EGR1 plays a dual role in myeloid cell differentiation, essential for monopoiesis and regulating macrophage inflammatory responses.
- EGR1's interaction with NuRD complex is critical for controlling inflammation in macrophages.
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