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Lupus susceptibility gene Esrrg modulates regulatory T cells through mitochondrial metabolism
Wei Li, Minghao Gong, Yuk Pheel Park, Ahmed S. Elshikha, Seung-Chul Choi, Josephine Brown, Nathalie Kanda, Wen-I Yeh, Leeana Peters, Anton A. Titov, Xiangyu Teng, Todd M. Brusko, Laurence Morel
Wei Li, Minghao Gong, Yuk Pheel Park, Ahmed S. Elshikha, Seung-Chul Choi, Josephine Brown, Nathalie Kanda, Wen-I Yeh, Leeana Peters, Anton A. Titov, Xiangyu Teng, Todd M. Brusko, Laurence Morel
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Research Article

Lupus susceptibility gene Esrrg modulates regulatory T cells through mitochondrial metabolism

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Abstract

Estrogen-related receptor γ (Esrrg) is a murine lupus susceptibility gene associated with T cell activation. Here, we report that Esrrg controls Tregs through mitochondria homeostasis. Esrrg deficiency impaired the maintenance and function of Tregs, leading to global T cell activation and autoimmunity in aged mice. Further, Esrrg-deficient Tregs presented an impaired differentiation into follicular Tregs that enhanced follicular helper T cells’ responses. Mechanistically, Esrrg-deficient Tregs presented with dysregulated mitochondria with decreased oxygen consumption as well as ATP and NAD+ production. In addition, Esrrg-deficient Tregs exhibited decreased phosphatidylinositol and TGF-β signaling pathways and increased mTOR complex 1 activation. We found that the expression of human ESRRG, which is high in Tregs, was lower in CD4+ T cells from patients with lupus than in healthy controls. Finally, knocking down ESRRG in Jurkat T cells decreased their metabolism. Together, our results reveal a critical role of Esrrg in the maintenance and metabolism of Tregs, which may provide a genetic link between lupus pathogenesis and mitochondrial dysfunction in T cells.

Authors

Wei Li, Minghao Gong, Yuk Pheel Park, Ahmed S. Elshikha, Seung-Chul Choi, Josephine Brown, Nathalie Kanda, Wen-I Yeh, Leeana Peters, Anton A. Titov, Xiangyu Teng, Todd M. Brusko, Laurence Morel

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Figure 6

Transcriptomic programming of Tregs by Esrrg.

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Transcriptomic programming of Tregs by Esrrg.
(A) RNA-Seq analysis was c...
(A) RNA-Seq analysis was conducted on sorted CD4+FOXP3+ Tregs from B6N.FOXP3YFP-Cre (WT, n = 5) and B6N.Esrrgfl/fl FOXP3YFP-Cre (cKO, n = 4) mice. Heatmaps show a selection of differentially expressed genes in Treg-relevant pathways. (B) Hallmark analysis showing differentially enriched gene sets from WT and cKO mice. (C) qRT-PCR analysis on selected differentially expressed genes. Results are presented as fold change after being normalized to housekeeping gene Hmbs (n = 4). (D) pE4BP1, pS6, p-Akt Ser473, HIF1α, and CD98 protein expression in Tregs from WT and cKO mice. Data were combined from 2–3 independent experiments with n = 4–5 each and expressed as fold change of the mean WT value for each experiment. Data are shown as mean ± SEM. Unpaired 2-tailed t tests, *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001.

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