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Histone demethylase JARID1C/KDM5C regulates Th17 cells by increasing IL-6 expression in diabetic plasmacytoid dendritic cells
Christopher O. Audu, Sonya J. Wolf, Amrita D. Joshi, Jadie Y. Moon, William J. Melvin, Sriganesh B. Sharma, Frank M. Davis, Andrea T. Obi, Rachel Wasikowski, Lam C. Tsoi, Emily C. Barrett, Kevin D. Mangum, Tyler M. Bauer, Steven L. Kunkel, Beth B. Moore, Katherine A. Gallagher
Christopher O. Audu, Sonya J. Wolf, Amrita D. Joshi, Jadie Y. Moon, William J. Melvin, Sriganesh B. Sharma, Frank M. Davis, Andrea T. Obi, Rachel Wasikowski, Lam C. Tsoi, Emily C. Barrett, Kevin D. Mangum, Tyler M. Bauer, Steven L. Kunkel, Beth B. Moore, Katherine A. Gallagher
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Research Article Immunology Inflammation

Histone demethylase JARID1C/KDM5C regulates Th17 cells by increasing IL-6 expression in diabetic plasmacytoid dendritic cells

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Abstract

Plasmacytoid dendritic cells (pDCs) are first responders to tissue injury, where they prime naive T cells. The role of pDCs in physiologic wound repair has been examined, but little is known about pDCs in diabetic wound tissue and their interactions with naive CD4+ T cells. Diabetic wounds are characterized by increased levels of inflammatory IL-17A cytokine, partly due to increased Th17 CD4+ cells. This increased IL-17A cytokine, in excess, impairs tissue repair. Here, using human tissue and murine wound healing models, we found that diabetic wound pDCs produced excess IL-6 and TGF-β and that these cytokines skewed naive CD4+ T cells toward a Th17 inflammatory phenotype following cutaneous injury. Further, we identified that increased IL-6 cytokine production by diabetic wound pDCs is regulated by a histone demethylase, Jumonji AT-rich interactive domain 1C histone demethylase (JARID1C). Decreased JARID1C increased IL-6 transcription in diabetic pDCs, and this process was regulated upstream by an IFN-I/TYK2/JAK1,3 signaling pathway. When inhibited in nondiabetic wound pDCs, JARID1C skewed naive CD4+ T cells toward a Th17 phenotype and increased IL-17A production. Together, this suggests that diabetic wound pDCs are epigenetically altered to increase IL-6 expression that then affects T cell phenotype. These findings identify a therapeutically manipulable pathway in diabetic wounds.

Authors

Christopher O. Audu, Sonya J. Wolf, Amrita D. Joshi, Jadie Y. Moon, William J. Melvin, Sriganesh B. Sharma, Frank M. Davis, Andrea T. Obi, Rachel Wasikowski, Lam C. Tsoi, Emily C. Barrett, Kevin D. Mangum, Tyler M. Bauer, Steven L. Kunkel, Beth B. Moore, Katherine A. Gallagher

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Figure 2

Histone demethylase JARID1C regulates IL-6 in diabetic wound pDCs and affects T cell Il17a expression.

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Histone demethylase JARID1C regulates IL-6 in diabetic wound pDCs and af...
(A) Jarid1c expression in ND and DIO wound pDCs. (N = 6/group, pooled, repeated in triplicate.) (B) ChIP of the H3K4me3 mark on the Il6 promoter in wound pDCs. (N = 6/group, pooled, repeated in triplicate.) (C) ChIP of Jarid1c at the Il6 promoter in wound pDCs. (N = 3–5/group, pooled, repeated in triplicate.) (D) Fold expression of Il6 in diabetic wound pDCs with and without recombinant JARID1C (rJARID1C, 10 nM, 24 hours; N = 3–5/group, pooled, repeated in triplicate). (E) Protein expression determined by ELISA of IL-6 in diabetic wound pDCs with and without rJARID1C (10 nM, 24 hours; N = 3–5/group, pooled, repeated in triplicate). (F) Fold expression of stimulated CD4+ T cell Il17a following incubation with supernatant from nondiabetic wound pDCs with and without JARID1 inhibition for 24 hours (KDOAM25, 500 nM; N = 3/group, pooled, repeated in triplicate) in the presence and absence of anti–IL-6 antibody. For each experiment, wound pDCs were harvested on day 1 after injury and isolated using EasySep pDC negative-selection magnetic bead kit. *P < 0.05, **P < 0.01. All data are presented as mean ± SEM. Data in F were statistically analyzed using 1-way ANOVA with Holm-Šidák multiple-comparison test. For all other panels, data were analyzed using 2-tailed Student’s t test once normality was assessed.

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