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12-Lipoxygenase governs the innate immune pathogenesis of islet inflammation and autoimmune diabetes
Abhishek Kulkarni, Annie R. Pineros, Melissa A. Walsh, Isabel Casimiro, Sara Ibrahim, Marimar Hernandez-Perez, Kara S. Orr, Lindsey Glenn, Jerry L. Nadler, Margaret A. Morris, Sarah A. Tersey, Raghavendra G. Mirmira, Ryan M. Anderson
Abhishek Kulkarni, Annie R. Pineros, Melissa A. Walsh, Isabel Casimiro, Sara Ibrahim, Marimar Hernandez-Perez, Kara S. Orr, Lindsey Glenn, Jerry L. Nadler, Margaret A. Morris, Sarah A. Tersey, Raghavendra G. Mirmira, Ryan M. Anderson
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Research Article Endocrinology

12-Lipoxygenase governs the innate immune pathogenesis of islet inflammation and autoimmune diabetes

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Abstract

Macrophages and related myeloid cells are innate immune cells that participate in the early islet inflammation of type 1 diabetes (T1D). The enzyme 12-lipoxygenase (12-LOX) catalyzes the formation of proinflammatory eicosanoids, but its role and mechanisms in myeloid cells in the pathogenesis of islet inflammation have not been elucidated. Leveraging a model of islet inflammation in zebrafish, we show here that macrophages contribute significantly to the loss of β cells and the subsequent development of hyperglycemia. The depletion or inhibition of 12-LOX in this model resulted in reduced macrophage infiltration into islets and the preservation of β cell mass. In NOD mice, the deletion of the gene encoding 12-LOX in the myeloid lineage resulted in reduced insulitis with reductions in proinflammatory macrophages, a suppressed T cell response, preserved β cell mass, and almost complete protection from the development of T1D. 12-LOX depletion caused a defect in myeloid cell migration, a function required for immune surveillance and tissue injury responses. This effect on migration resulted from the loss of the chemokine receptor CXCR3. Transgenic expression of the gene encoding CXCR3 rescued the migratory defect in zebrafish 12-LOX morphants. Taken together, our results reveal a formative role for innate immune cells in the early pathogenesis of T1D and identify 12-LOX as an enzyme required to promote their prodiabetogenic phenotype in the context of autoimmunity.

Authors

Abhishek Kulkarni, Annie R. Pineros, Melissa A. Walsh, Isabel Casimiro, Sara Ibrahim, Marimar Hernandez-Perez, Kara S. Orr, Lindsey Glenn, Jerry L. Nadler, Margaret A. Morris, Sarah A. Tersey, Raghavendra G. Mirmira, Ryan M. Anderson

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Figure 6

CXCR3 is reduced in the absence of 12-LOX.

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CXCR3 is reduced in the absence of 12-LOX.
(A) Chemokine receptor mRNA e...
(A) Chemokine receptor mRNA expression in macrophages from WT and Alox15–/– mice (n = 3–4 mice per genotype; *P < 0.05 by unpaired 2-tailed t test). (B) Representative contour plots showing gating of F4/80+ CXCR3+ cells are shown on the left and F4/80+ CXCR3+ cells as a percentage of total peritoneal cells from WT and Alox15–/– mice are shown on the right (n = 3 mice per genotype; *P < 0.05 by unpaired 2-tailed t test). (C) cxcr3.2 mRNA expression from whole lysates of control-treated and alox12 MO-treated zebrafish (n = 4 independent experiments from pooled zebrafish larvae; *P < 0.05 by unpaired 2-tailed t test). (D) Representative images of injured Tg(mpeg:eGFP) zebrafish tailfins stained with GFP (macrophages, green) and TO-PRO3 (nuclei, red) are shown on the left; and corresponding quantitation of relative number of macrophages at the tail injury site in the control, alox12 MO–injected fish, fish injected with a vector for macrophage-specific overexpression of cxcr3.2, and fish coinjected with alox12 MO and vector for macrophage-specific overexpression of cxcr3.2 is shown on the right (n = 20–30 fish per condition; *P < 0.05 by 1-way ANOVA with post hoc Tukey’s test). (E) Representative images of injured Tg(mpeg:eGFP) zebrafish tailfins stained with GFP (macrophages, green) and TO-PRO3 (nuclei, red) are shown on the left, and corresponding quantitation of relative number of macrophages at the tail injury site in the vehicle control and BLT2 inhibitor LY255283-treated fish is shown on the right (n = 20–25 fish per condition; *P < 0.05 by 1-way ANOVA with post hoc Tukey’s test). Scale bars in D and E indicate 100 μm. (F) Cxcr3 mRNA expression in mouse peritoneal cells treated with 10 μM LY255283 for 24 hours (cells from n = 5 mice per condition; *P < 0.05 by unpaired 2-tailed t test). (G) F4/80+CXCR3+ cells as a percentage of total peritoneal cells by flow cytometry after treatment with 10 μM LY255283 for 24 hours (cells from n = 5 mice per condition; *P < 0.05 by unpaired 2-tailed t test). Data are presented as mean ± SEM. 12-LOX, 12-lipoxygenase; MO, morpholino; GFP, green fluorescence protein; Tg(mpeg:eGFP), transgenic fish containing eGFP-labeled macrophages.

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