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IL-1α, IL-1β, and IFN-γ mark β cells for Fas-dependent destruction by diabetogenic CD4+ T lymphocytes
Abdelaziz Amrani, … , Sonny Bou, Pere Santamaria
Abdelaziz Amrani, … , Sonny Bou, Pere Santamaria
Published February 15, 2000
Citation Information: J Clin Invest. 2000;105(4):459-468. https://doi.org/10.1172/JCI8185.
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IL-1α, IL-1β, and IFN-γ mark β cells for Fas-dependent destruction by diabetogenic CD4+ T lymphocytes

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Abstract

Cytokines such as IL-1α, IL-1β, and IFN-γ have long been implicated in the pathogenesis of autoimmune diabetes, but the mechanisms through which they promote diabetogenesis remain unclear. Here we show that CD4+ T lymphocytes propagated from transgenic nonobese diabetic (NOD) mice expressing the highly diabetogenic, β cell–specific 4.1-T-cell receptor (4.1-TCR) can kill IL-1α–, IL-1β–, and IFN-γ–treated β cells from NOD mice. Untreated NOD β cells and cytokine-treated β cells from Fas-deficient NOD.lpr mice are not targeted by these T cells. Killing of islet cells in vitro was associated with cytokine-induced upregulation of Fas on islet cells and was independent of MHC class II expression. Abrogation of Fas expression in 4.1-TCR–transgenic NOD mice afforded nearly complete protection from diabetes and did not interfere with the development of the transgenic CD4+ T cells or with their ability to cause insulitis. In contrast, abrogation of perforin expression did not affect β cell–specific cytotoxicity or the diabetogenic potential of these T cells. These data demonstrate a novel mechanism of action of IL-1α, IL-1β, and IFN-γ in autoimmune diabetes, whereby these cytokines mark β cells for Fas-dependent lysis by autoreactive CD4+ T cells.

Authors

Abdelaziz Amrani, Joan Verdaguer, Shari Thiessen, Sonny Bou, Pere Santamaria

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Figure 5

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Spontaneous diabetes in oligoclonal and monoclonal 4.1-NOD, 4.1-NOD.PO+/...
Spontaneous diabetes in oligoclonal and monoclonal 4.1-NOD, 4.1-NOD.PO+/–, and 4.1-NOD.PO–/– mice. (a) Oligoclonal mice. Data correspond to 57 female and 49 male 4.1-NOD mice, 21 female and 20 male 4.1-NOD.PO+/– mice, and 63 female and 42 male 4.1-NOD.PO–/– mice. The incidence of diabetes in 4.1-NOD.PO–/– mice was significantly lower than in 4.1-NOD mice (P < 0.02). (b) Monoclonal mice. Data correspond to 74 female and 70 male RAG-2–/– 4.1-NOD mice, and 31 female and 18 male RAG-2–/– 4.1-NOD.PO–/– mice.

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