Expression of Transgenic FLIP on Thyroid Epithelial Cells Inhibits Induction and Promotes Resolution of Granulomatous Experimental Autoimmune Thyroiditis in CBA/J Mice

Author:

Fang Yujiang1,DeMarco Vincent G.2,Sharp Gordon C.13,Braley-Mullen Helen145

Affiliation:

1. Departments of Internal Medicine (Y.F., G.C.S., H.B.-M.), Department of Veterans Affairs Medical Center, Columbia, Missouri 65212

2. Departmentsof Child Health (V.G.D.), Department of Veterans Affairs Medical Center, Columbia, Missouri 65212

3. Departments of Pathology (G.C.S.), Department of Veterans Affairs Medical Center, Columbia, Missouri 65212

4. Departments of Molecular Microbiology and Immunology (H.B.-M.), School of Medicine, University of Missouri, Department of Veterans Affairs Medical Center, Columbia, Missouri 65212

5. Veterans Affairs Research Service (H.B.-M.), Department of Veterans Affairs Medical Center, Columbia, Missouri 65212

Abstract

Granulomatous experimental autoimmune thyroiditis (G-EAT) is induced by transfer of thyroglobulin-primed in vitro activated splenocytes. Thyroid lesions reach maximal severity 20 d later, and inflammation resolves or progresses to fibrosis by d 60, depending on the extent of thyroid damage at d 20. Depletion of CD8+ T cells inhibits G-EAT resolution. We showed that expression of Fas-associated death domain-like IL-1β-converting enzyme inhibitory protein (FLIP) transgene (Tg) on thyroid epithelial cells (TECs) of DBA/1 mice had no effect on G-EAT induction but promoted earlier resolution of G-EAT. However, when CBA/J wild-type donor cells were transferred to transgenic CBA/J mice expressing FLIP on TECs, they developed less severe G-EAT than FLIP Tg− littermates. Both strains expressed similar levels of the FLIP Tg, but endogenous FLIP was up-regulated to a greater extent on infiltrating T cells during G-EAT development in DBA/1 compared with CBA/J mice. After transient depletion of CD8+ T cells, FLIP Tg+ and Tg− CBA/J recipients both developed severe G-EAT at d 20. Thyroid lesions in CD8-depleted Tg+ recipients were resolving by d 60, whereas lesions in Tg− littermates did not resolve, and most were fibrotic. FLIP Tg+ recipients had increased apoptosis of CD3+ T cells compared with Tg− recipients. The results indicate that transgenic FLIP expressed on TECs in CBA/J mice promotes G-EAT resolution, but induction of G-EAT is inhibited unless CD8+ T cells are transiently depleted.

Publisher

The Endocrine Society

Subject

Endocrinology

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