Genetic and pharmacological inhibition of the nuclear receptor RORα regulates TH17 driven inflammatory disorders

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作者
Ran Wang
Sean Campbell
Mohammed Amir
Sarah A. Mosure
Molly A. Bassette
Amber Eliason
Mark S. Sundrud
Theodore M. Kamenecka
Laura A. Solt
机构
[1] The Scripps Research Institute,Department of Immunology and Microbiology
[2] The Scripps Research Institute,Department of Integrative Structural and Computational Biology
[3] The Scripps Research Institute,Skaggs Graduate School of Chemical and Biological Sciences
[4] The Scripps Research Institute,Department of Molecular Medicine
[5] The University of Queensland,Mater Research Institute
[6] Gale and Ira Drukier Institute for Children’s Health,undefined
[7] Department of Pediatrics,undefined
[8] Weill Cornell Medicine,undefined
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Nature Communications | / 12卷
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摘要
Full development of IL-17 producing CD4+ T helper cells (TH17 cells) requires the transcriptional activity of both orphan nuclear receptors RORα and RORγt. However, RORα is considered functionally redundant to RORγt; therefore, the function and therapeutic value of RORα in TH17 cells is unclear. Here, using mouse models of autoimmune and chronic inflammation, we show that expression of RORα is required for TH17 cell pathogenicity. T-cell-specific deletion of RORα reduces the development of experimental autoimmune encephalomyelitis (EAE) and colitis. Reduced inflammation is associated with decreased TH17 cell development, lower expression of tissue-homing chemokine receptors and integrins, and increased frequencies of Foxp3+ T regulatory cells. Importantly, inhibition of RORα with a selective small molecule antagonist mostly phenocopies our genetic data, showing potent suppression of the in vivo development of both chronic/progressive and relapsing/remitting EAE, but with no effect on overall thymic cellularity. Furthermore, use of the RORα antagonist effectively inhibits human TH17 cell differentiation and memory cytokine secretion. Together, these data suggest that RORα functions independent of RORγt in programming TH17 pathogenicity and identifies RORα as a safer and more selective therapeutic target for the treatment of TH17-mediated autoimmunity.
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