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Decoupling the role of RORγt in the differentiation and effector function of T H 17 cells.

Xiancai ZhongHongmin WuWencan ZhangYousang GwackWeirong ShangKyle O LeeNoah IsakovZhiheng HeZuoming Sun
Published in: Science advances (2022)
RORγt is known to instruct the differentiation of T helper 17 (T H 17) cells that mediate the pathogenesis of autoimmune diseases. However, it remains unknown whether RORγt plays a distinct role in the differentiation and effector function of T H 17 cells. Here, we show that mutation of RORγt lysine-256, a ubiquitination site, to arginine (K256R) separates the RORγt role in these two functions. Preventing ubiquitination at K256 via arginine substitution does not affect RORγt-dependent thymocyte development, and T H 17 differentiation in vitro and in vivo, however, greatly impaired the pathogenesis of T H 17 cell-mediated experimental autoimmune encephalomyelitis (EAE). Mechanistically, K256R mutation impairs RORγt to bind to and activate Runx1 expression critical for T H 17-mediated EAE. Thus, RORγt regulates the effector function of T H 17 cells in addition to T H 17 differentiation. This work informs the development of RORγt-based therapies that specifically target the effector function of T H 17 cells responsible for autoimmunity.
Keyphrases
  • induced apoptosis
  • cell cycle arrest
  • dendritic cells
  • regulatory t cells
  • endoplasmic reticulum stress
  • nitric oxide
  • stem cells
  • signaling pathway
  • mesenchymal stem cells
  • immune response
  • cell therapy
  • single cell