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An Efficient and High Yield Method for Isolation of Mouse Dendritic Cell Subsets
Published on: April 18, 2016
Serum lipids regulate dendritic cell CD1 expression and function
David S Leslie1, Christopher C Dascher, Katherine Cembrola
1Division of Rheumatology, Immunology and Allergy, Department of Medicine, Brigham & Women's Hospital and Harvard Medical School, Boston, MA, USA.
Insights
Human serum components, specifically lysophosphatidic acid and cardiolipin, regulate dendritic cell (DC) surface molecule CD1 expression. This modulation impacts T cell responses, highlighting a key mechanism in immune cell interactions.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Dendritic cells (DCs) are crucial antigen-presenting cells (APCs) that activate T cells.
- Immature DCs (iDCs) are generated from monocytes using GM-CSF and IL-4.
- DCs express CD1 molecules for presenting lipid antigens to T cells.
Purpose of the Study:
- To investigate how human serum affects CD1 expression on DCs during differentiation.
- To identify specific serum factors that modulate CD1 expression.
- To understand the mechanism controlling CD1 expression and its impact on T cell responses.
Main Methods:
- Monocyte-derived iDC generation in vitro with and without human serum.
- Chemical fractionation of human serum to isolate bioactive components.
- Analysis of CD1 surface protein expression (CD1a, CD1b, CD1c, CD1d).
- Assessment of T cell responses restricted by CD1c and CD1d.
- Gene transcription analysis and PPAR activation assays.
Main Results:
- Human serum inhibits CD1a, CD1b, and CD1c expression, but not CD1d, on differentiating DCs.
- Lysophosphatidic acid and cardiolipin in serum potently modulate CD1 expression.
- Serum-modulated DCs show reduced T cell responses for CD1c-restricted cells and enhanced responses for CD1d-restricted cells.
- CD1 expression regulation occurs at the gene transcription level, linked to PPAR activation.
Conclusions:
- Serum lipids, specifically lysophosphatidic acid and cardiolipin, are key regulators of CD1 expression on human DCs.
- PPAR nuclear receptors mediate the transcriptional control of CD1 expression.
- This regulation fine-tunes the presentation of lipid antigens and influences T cell immunity.
Abstract:
Dendritic cells (DCs) are highly potent antigen-presenting cells (APCs) and play a vital role in stimulating naïve T cells. Treatment of human blood monocytes with the cytokines granulocyte-macrophage colony-stimulating factor (GM-CSF) and interleukin (IL)-4 stimulates them to develop into immature dendritic cells (iDCs) in vitro. DCs generated by this pathway have a high capacity to prime and activate resting T cells and prominently express CD1 antigen-presenting molecules on the cell surface. The presence of human serum during the differentiation of iDCs from monocytes inhibits the expression of CD1a, CD1b and CD1c, but not CD1d. Correspondingly, T cells that are restricted by CD1c showed poor responses to DCs that were generated in the presence of human serum, while the responses of CD1d-restricted T cells were enhanced. We chemically fractionated human serum to isolate the bioactive factors that modulate surface expression of CD1 proteins during monocyte to DC differentiation. The human serum components that affected CD1 expression partitioned with polar organic soluble fractions. Lysophosphatidic acid and cardiolipin were identified as lipids present in normal human serum that potently modulate CD1 expression. Control of CD1 expression was mediated at the level of gene transcription and correlated with activation of the peroxisome proliferator-activated receptor (PPAR) nuclear hormone receptors. These findings indicate that the ability of human DCs to present lipid antigens to T cells through expression of CD1 molecules is sensitively regulated by lysophosphatidic acid and cardiolipin in serum, which are ligands that can activate PPAR transcription factors.
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