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Published on: July 9, 2008
Differential production of inflammatory chemokines by murine dendritic cell subsets
Anna I Proietto1, Meredith O'Keeffe, Kate Gartlan
1The Walter and Eliza Hall Institute of Medical Research, 1G, Royal Parade, Parkville, Vic. 3050, Australia.
Insights
Murine dendritic cell (DC) subsets show varied inflammatory chemokine production. CD4+ conventional DCs (cDCs) are the most efficient producers of Mip-1alpha, Mip-1beta, and Rantes chemokines.
Area of Science:
- Immunology
- Cell Biology
Background:
- Dendritic cells (DCs) are key antigen-presenting cells crucial for T cell activation.
- Murine DCs comprise heterogeneous subsets, including conventional DCs (cDCs) and plasmacytoid DCs (pDCs).
- cDC subsets are further classified as CD4(-)CD8(-) (DN), CD4(+)CD8(-) (CD4+), and CD4(-)CD8(+) (CD8+).
Purpose of the Study:
- To investigate differential gene expression and secretion of inflammatory chemokines (Mip-1alpha, Mip-1beta, Rantes) among splenic DC subsets.
- To identify functional differences in chemokine production between murine splenic DC subsets.
Main Methods:
- Analysis of chemokine gene expression in resting and in vivo activated splenic DC subsets.
- Measurement of chemokine secretion from DC subsets stimulated with toll-like receptor (TLR) agonists in vitro.
Main Results:
- Splenic CD4+ and DN cDC subsets exhibited higher chemokine gene expression than CD8+ cDCs.
- Both pDC and cDC subsets increased chemokine secretion upon TLR stimulation.
- CD4+ cDCs were the most efficient producers of all investigated chemokines, both basally and after TLR stimulation.
Conclusions:
- A novel functional distinction exists among murine splenic cDC subsets.
- CD4+ cDCs demonstrate superior production of inflammatory chemokines Mip-1alpha, Mip-1beta, and Rantes compared to other cDC subsets.
Abstract:
Dendritic cells (DC) are efficient antigen presenting cells with the ability to activate naïve T cells. Murine DC represent a heterogeneous population that can be subdivided into distinct subsets, including the conventional DC (cDC) which are either CD4(-)CD8(-) (DN), CD4(+)CD8(-) (CD4+) or CD4(-)CD8(+) (CD8+) subsets and the plasmacytoid DC (pDC), which have different immune regulatory functions. In this study, we investigated the differential expression of genes encoding the inflammatory chemokines Mip-1alpha, Mip-1beta and Rantes, and the secretion of these chemokines, among splenic DC subsets. These chemokine genes were expressed at higher levels by the splenic CD4+ and DN cDC subsets compared with the CD8+ cDC, in both the resting and activated states in vivo. Both the pDC and cDC subsets displayed increases in chemokine secretion in response to a range of toll-like receptor (TLR) stimuli in vitro. Whilst the pDC were the highest producers of Mip-1alpha and Mip-1beta in response to some TLR stimuli, the DN and CD4+ cDC subsets were the superior producers of Rantes. Overall, of the cDC, the CD4+ cDC produced all chemokines most efficiently, both at a basal level, and in response to most TLR stimuli. Thus, we report a new functional difference between the murine splenic cDC subsets, with the CD4+ cDC demonstrating the most efficient production of the inflammatory chemokines Mip-1alpha, Mip-1beta and Rantes.
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