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Published on: May 31, 2018
Antigen presenting cell response to polysaccharide A is characterized by the generation of anti-inflammatory
Julie Y Zhou1, David Zhou2, Kevin Telfer1
1Department of Pathology, Case Western Reserve University School of Medicine, 10900 Euclid Avenue, Cleveland, OH 44106-7288, USA.
Abstract:
Polysaccharide A (PSA) is the immunodominant capsular carbohydrate from the gram negative commensal microbe Bacteroides fragilis that has shown remarkable potency in ameliorating many rodent models of inflammatory disease by eliciting downstream suppressive CD4+ T cells. PSA is composed of a zwitterionic repeating unit that allows it to be processed by antigen presenting cells (APCs) and presented by MHCII in a glycosylation-dependent manner. While previous work has uncovered much about the interactions between MHCII and PSA, as well as the downstream T cell response, little is known about how PSA affects the phenotype of MHCII+ APCs, including macrophages. Here, we utilized an unbiased systems approach consisting of RNAseq transcriptomics, high-throughput flow cytometry, Luminex analysis and targeted validation experiments to characterize the impact of PSA-mediated stimulation of splenic MHCII+ cells. The data revealed that PSA potently elicited the upregulation of an alternatively activated M2 macrophage transcriptomic and cell surface signature. Cell-type-specific validation experiments further demonstrated that PSA-exposed bone marrow-derived macrophages (BMDMs) induced cell surface and intracellular markers associated with M2 macrophages compared with conventional peptide ovalbumin (ova)-exposed BMDMs. In contrast to macrophages, we also found that CD11c+ dendritic cells (DCs) upregulated the pro-T cell activation costimulatory molecule CD86 following PSA stimulation. Consistent with the divergent BMDM and DC changes, PSA-exposed DCs elicited an antigen-experienced T cell phenotype in co-cultures, whereas macrophages did not. These findings collectively demonstrate that the PSA-induced immune response is characterized by both T cell stimulation via presentation by DCs, and a previously unrecognized anti-inflammatory polarization of macrophages.
Insights
Polysaccharide A (PSA) from Bacteroides fragilis induces anti-inflammatory M2 macrophages and promotes T cell activation via dendritic cells, offering new insights into immune modulation for inflammatory diseases.
Area of Science:
- Immunology
- Microbiome research
- Glycoimmunology
Background:
- Polysaccharide A (PSA) from Bacteroides fragilis is a potent immunomodulator.
- PSA ameliorates inflammatory diseases by activating suppressive CD4+ T cells.
- The effect of PSA on antigen-presenting cell (APC) phenotype, particularly macrophages, is poorly understood.
Purpose of the Study:
- To investigate the impact of PSA on the phenotype of MHCII+ antigen-presenting cells (APCs).
- To characterize the transcriptomic and cell surface changes in APCs stimulated with PSA.
Main Methods:
- Unbiased systems approach including RNAseq transcriptomics, high-throughput flow cytometry, and Luminex analysis.
- Cell-type-specific validation experiments using bone marrow-derived macrophages (BMDMs) and dendritic cells (DCs).
- Co-culture experiments to assess T cell responses.
Main Results:
- PSA stimulation upregulated M2 macrophage-associated transcriptomic and cell surface markers in BMDMs.
- Dendritic cells (DCs) upregulated the costimulatory molecule CD86 upon PSA exposure.
- PSA-stimulated DCs induced an antigen-experienced T cell phenotype, while macrophages did not.
Conclusions:
- PSA induces distinct responses in macrophages and dendritic cells.
- PSA promotes anti-inflammatory polarization of macrophages and T cell activation via DCs.
- These findings reveal a dual mechanism of PSA-mediated immune regulation.
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