细胞生物学
转录因子
RAR相关孤儿受体γ
细胞分化
辅活化剂
生物
FOXP3型
免疫学
癌症研究
遗传学
基因
免疫系统
作者
Jing Geng,Shujuan Yu,Hao Zhao,Xiufeng Sun,Xun Li,Ping Wang,Xiaolin Xiong,Lian Hong,Changchuan Xie,Jiahui Gao,Yiran Shi,Jiaqi Peng,Randy L. Johnson,Nengming Xiao,Linrong Lu,Jiahuai Han,Dawang Zhou,Lanfen Chen
摘要
An imbalance in the lineages of immunosuppressive regulatory T cells (Treg cells) and the inflammatory TH17 subset of helper T cells leads to the development of autoimmune and/or inflammatory disease. Here we found that TAZ, a coactivator of TEAD transcription factors of Hippo signaling, was expressed under TH17 cell-inducing conditions and was required for TH17 differentiation and TH17 cell-mediated inflammatory diseases. TAZ was a critical co-activator of the TH17-defining transcription factor RORγt. In addition, TAZ attenuated Treg cell development by decreasing acetylation of the Treg cell master regulator Foxp3 mediated by the histone acetyltransferase Tip60, which targeted Foxp3 for proteasomal degradation. In contrast, under Treg cell-skewing conditions, TEAD1 expression and sequestration of TAZ from the transcription factors RORγt and Foxp3 promoted Treg cell differentiation. Furthermore, deficiency in TAZ or overexpression of TEAD1 induced Treg cell differentiation, whereas expression of a transgene encoding TAZ or activation of TAZ directed TH17 cell differentiation. Our results demonstrate a pivotal role for TAZ in regulating the differentiation of Treg cells and TH17 cells.
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