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Ox40-Cre–mediated deletion of BRD4 reveals an unexpected phenotype of hair follicle stem cells in alopecia
Mou Wen, Yuanlin Ying, Xiang Xiao, Preston R. Arnold, Guangchuan Wang, Xiufeng Chu, Rafik M. Ghobrial, Xian C. Li
Mou Wen, Yuanlin Ying, Xiang Xiao, Preston R. Arnold, Guangchuan Wang, Xiufeng Chu, Rafik M. Ghobrial, Xian C. Li
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Research Article Immunology

Ox40-Cre–mediated deletion of BRD4 reveals an unexpected phenotype of hair follicle stem cells in alopecia

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Abstract

BRD4 is a bromodomain extraterminal domain family member and functions primarily as a chromatin reader regulating genes involved in cell-fate decisions. Here, we bred Brd4fl/fl Ox40-Cre mice in which Brd4 was conditionally deleted in OX40-expressing cells to examine the role of BRD4 in regulating immune responses. We found that the Brd4fl/fl Ox40-Cre mice developed profound alopecia and dermatitis, while other organs and tissues were not affected. Surprisingly, lineage-tracing experiments using the Rosa26fl/fl-Yfp mice identified a subset of hair follicle stem cells (HFSCs) that constitutively express OX40, and deletion of Brd4 specifically in such HFSCs resulted in cell death and a complete loss of skin hair growth. We also found that death of HFSCs triggered massive activation of the intradermal γδ T cells, which induced epidermal hyperplasia and dermatitis by producing the inflammatory cytokine IL-17. Interestingly, deletion of Brd4 in Foxp3+ Tregs, which also constitutively express OX40, compromised their suppressive functions, and this, in turn, contributed to the enhanced activation of γδ T cells, as well as the severity of dermatitis and hair follicle destruction. Thus, our data demonstrate an unexpected role of BRD4 in regulating skin follicle stem cells and skin inflammation.

Authors

Mou Wen, Yuanlin Ying, Xiang Xiao, Preston R. Arnold, Guangchuan Wang, Xiufeng Chu, Rafik M. Ghobrial, Xian C. Li

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Figure 2

Genetic lineage tracing of OX40-expressing cells in the immune system and skin parenchyma.

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Genetic lineage tracing of OX40-expressing cells in the immune system an...
(A) Flow cytometric analysis of Rosa26-YFP+ cells in peripheral lymph nodes from Rosa26fl/fl-Yfp–Ox40-Cre mice gated on lymphoid lineage (CD45+) live cells. n = 5. (B) Flow cytometric analysis of intracellular BRD4 expression in CD4+ cells gated on TCR-β+ cells in lymph nodes of Ox40-Cre and Brd4fl/fl Ox40-Cre mice (top), and the percentage of BRD4– cells in the bar graph (bottom). n = 3. (C) Flow cytometric analysis of Rosa26-YFP+ skin parenchymal cells (CD45–Itgα6+) isolated from dorsal skin of Rosa26fl/fl-Yfp–Ox40-Cre mice. HFSCs were marked as CD45–Itgα6+CD34+Sca1–. n = 5. (D) Intracellular expression of BRD4 in follicle stem cells gated onto the CD45–Itgα6+ live cells isolated from dorsal skin of Ox40-Cre and Brd4fl/fl Ox40-Cre mice. n = 3. Mice were at the age of 8 weeks (A–D). (E) Immunofluorescence of keratin 14 (red) and YFP (green), and both merged with DAPI staining (third column) in dorsal skin sections of Rosa26fl/fl-Yfp–Ox40-Cre mice at the indicated ages. Data shown in all panels are representative results from 3 experiments. Graphs are shown as mean ± SD. ***P < 0.001, ****P < 0.0001, by 2-tailed Student’s t test (B).

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