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Native Polyacrylamide Gel Electrophoresis Immunoblot Analysis of Endogenous IRF5 Dimerization
Published on: October 6, 2019
Innate immunity to intraphagosomal pathogens is mediated by interferon regulatory factor 8 (IRF-8) that stimulates
Michal Alter-Koltunoff1, Sigal Goren, Janna Nousbeck
1Department of Biotechnology and Food Engineering, Technion-Israel Institute of Technology, Haifa 32000, Israel.
Abstract:
Macrophages are a central arm of innate immune defense against intracellular pathogens. They internalize microbes into phagosomes where the invaders are being killed by oxygen and nitrogen reactive species. Despite this battery of antimicrobial molecules, some are able to thrive within the phagosome thus termed intraphagosomal pathogens among which are Salmonella, Leishmania, and Mycobacteria. In mice, a single dominant gene termed Nramp1/Slc11a1 controls innate resistance to such pathogens. This gene is expressed exclusively in myeloid cells. Previously, we have shown that the restricted expression of Nramp1 is regulated by a myeloid cell-specific transcription factor termed IRF-8/ICSBP. It is demonstrated here that the induction of Nramp1 expression in activated macrophages is accompanied by a promoter shift from a repression state elicited by c-Myc to an activation state elicited by the induction of IRF-8 in activated macrophages. This transition from repression to activation is facilitated by a competitive protein-protein interaction with the transcription factor Miz-1. To show that IRF-8 is directly involved in the elimination of intraphagosomal pathogens through the regulation of Nramp1 gene expression, we bred wild type as well as IRF-8 and Nramp1 null mouse strains and examined macrophages derived from bone marrow and peritoneum. Our results clearly show that the absence of IRF-8 and Nramp1 leads to the same phenotype; defective killing of intraphagosomal Salmonella enterica serovar typhimurium and Mycobacterium bovis. Thus, interplay between repression and activation state of the Nramp1 promoter mediated by IRF-8 provides the molecular basis by which macrophages resist intraphagosomal pathogens at early stage after infection.
Insights
The transcription factor IRF-8 (Interferon regulatory factor 8) activates Nramp1 (Natural resistance-associated macrophage protein 1) expression in macrophages. This IRF-8-mediated activation is crucial for controlling intracellular pathogens like Salmonella and Mycobacterium.
Area of Science:
- Immunology
- Molecular Biology
- Genetics
Background:
- Macrophages are key innate immune cells that combat intracellular pathogens within phagosomes.
- Some pathogens, including Salmonella and Mycobacteria, survive within macrophages.
- The gene Nramp1 (also known as Slc11a1) plays a critical role in innate resistance to these intraphagosomal pathogens.
Purpose of the Study:
- To elucidate the molecular mechanisms regulating Nramp1 gene expression in macrophages.
- To determine the role of the transcription factor IRF-8 (Interferon regulatory factor 8) in controlling intraphagosomal pathogens.
Main Methods:
- Analysis of Nramp1 promoter activity in macrophages.
- Investigating protein-protein interactions involving IRF-8, c-Myc, and Miz-1.
- Phenotypic analysis of IRF-8 and Nramp1 knockout mouse models.
Main Results:
- Nramp1 expression is regulated by a shift from c-Myc-mediated repression to IRF-8-mediated activation at the Nramp1 promoter.
- IRF-8 directly induces Nramp1 expression in activated macrophages.
- Absence of IRF-8 or Nramp1 results in impaired killing of Salmonella and Mycobacterium.
Conclusions:
- IRF-8 is a critical regulator of Nramp1 gene expression, controlling macrophage defense against intraphagosomal pathogens.
- The interplay between promoter repression and activation mediated by IRF-8 provides a molecular basis for early-stage resistance to intracellular bacterial infections.
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