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Updated: Jun 6, 2026

In Vitro Generation of Murine Plasmacytoid Dendritic Cells from Common Lymphoid Progenitors using the AC-6 Feeder System
Published on: November 23, 2015
Bcl6 is required for the development of mouse CD4+ and CD8α+ dendritic cells
Hiromi Ohtsuka1, Akemi Sakamoto, Jing Pan
1Department of Developmental Genetics, Graduate School of Medicine, Chiba University, Chiba, Japan.
Insights
Bcl6-knockout mice show reduced dendritic cell (DC) numbers and increased Th2 inflammation. Bcl6 controls DC precursor survival via p53 and influences DC cytokine production, impacting T helper cell responses.
Area of Science:
- Immunology
- Molecular Biology
Background:
- Bcl6-knockout (KO) mice exhibit spontaneous Th2-type inflammation.
- The role of dendritic cells (DCs) in this inflammation was previously unreported.
Purpose of the Study:
- To investigate the function of DCs in Bcl6-KO mice and their contribution to Th2 inflammation.
Main Methods:
- Flow cytometry to analyze DC populations in spleen.
- Bone marrow chimeras to assess DC development.
- In vitro cultures of DC precursors and activated DCs.
- Analysis of apoptosis and gene expression (p53).
- T cell stimulation assays with DCs.
Main Results:
- Bcl6-KO mice showed reduced CD4+ and CD8α+ conventional DCs (cDCs) in the spleen.
- DC precursor development was impaired in Bcl6-KO bone marrow, linked to increased apoptosis and p53 overexpression.
- Bcl6-deficient DCs produced more IL-6 and less IL-12, promoting Th2 skewing.
- Th2 cell development was enhanced in Bcl6-KO mice.
Conclusions:
- Bcl6 is crucial for the survival of DC precursors by regulating p53.
- Activated Bcl6-deficient DCs promote Th2 cell differentiation through altered cytokine production (IL-6, IL-12).
- These findings elucidate a novel role for Bcl6 in immune regulation via DCs.
Abstract:
Th2-type inflammation spontaneously shown in Bcl6-knockout (KO) mice is mainly caused by bone marrow (BM)-derived nonlymphoid cells. However, the function of dendritic cells (DCs) in Bcl6-KO mice has not been reported. We show in this article that the numbers of CD4(+) conventional DCs (cDCs) and CD8α(+) cDCs, but not of plasmacytoid DCs, were markedly reduced in the spleen of Bcl6-KO mice. Generation of cDCs from DC progenitors in BM cells was perturbed in the spleen of irradiated wild-type (WT) mice transferred with Bcl6-KO BM cells, indicating an intrinsic effect of Bcl6 in cDC precursors. Although cDC precursors were developed in a Bcl6-KO BM culture with Fms-like tyrosine kinase 3 ligand, the cDC precursors were more apoptotic than WT ones. Also p53, one of the molecular targets of Bcl6, was overexpressed in the precursors. The addition of a p53 inhibitor to Bcl6-KO BM culture protected apoptosis, suggesting that Bcl6 is required by cDC precursors for survival by controlling p53 expression. Furthermore, large numbers of T1/ST2(+) Th2 cells were naturally developed in the spleen of Bcl6-KO mice. Th2 skewing was accelerated in the culture of WT CD4 T cells stimulated with Ags and LPS-activated Bcl6-KO BM-derived DCs, which produced more IL-6 and less IL-12 than did WT DCs; the addition of anti-IL-6 Abs to the culture partially abrogated the Th2 skewing. These results suggest that Bcl6 is required in cDC precursors for survival and in activated DCs for modulating the cytokine profile.
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