Transcription factor c-Rel is indispensable for generation of thymic but not of peripheral Foxp3+ regulatory T cells

被引:12
|
作者
Luu, Maik [1 ]
Jenike, Elena [1 ]
Vachharajani, Niyati [1 ]
Visekruna, Alexander [1 ]
机构
[1] Philipps Univ Marburg, Inst Med Microbiol & Hyg, Marburg, Germany
关键词
regulatory T cells; NF-kappa B; inflammation; IN-VIVO; KAPPA-B; LYMPHOCYTE-PROLIFERATION; LINEAGE COMMITMENT; DNA METHYLATION; NUCLEAR-FACTOR; IL-2; RECEPTOR; EXPRESSION; INDUCTION; GENE;
D O I
10.18632/oncotarget.17079
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
The transcription factor c-Rel has been shown to be crucial for development of regulatory T cells (Tregs). Recent studies have reported that the expression of transcription factor Helios in Foxp3(+) Tregs correlates with thymic origin of these cells (tTregs). Notably, we found that only the Helios(+) Foxp3(+) Treg cell population was substantially reduced in c-Rel deficient mice. In contrast to a defective tTreg development, we observed an expansion of mucosal Tregs during the induction of acute colitis in rel(-/-) mice. Furthermore, we found a preferential accumulation of Helios(-) Foxp3(+) Tregs in aged c-Rel deficient mice. This unexpected finding, together with the observation that naive CD4(+) T cells convert into Tregs in vitro in the absence of c-Rel and presence of IL-2, provide an evidence that extra-thymic generation of induced and peripheral Tregs (iTregs and pTregs) is independent of c-Rel. Moreover, the treatment with IL-2/anti-IL-2 mAb (JES6-1) resulted in a widespread increase of Helios(+) Foxp3(+) Tregs in both wild-type (WT) and rel(-/-) mice. These data suggest that exogenous IL-2 administration compensates for defective IL-2 production and reduced tTreg numbers in c-Rel deficient mice. Our findings reveal that c-Rel is essential for the generation of tTregs but not for that of pTregs and iTregs.
引用
收藏
页码:52678 / 52689
页数:12
相关论文
共 50 条
  • [21] Indispensable Role of the Runx1-Cbfβ Transcription Complex for In Vivo-Suppressive Function of FoxP3+ Regulatory T Cells
    Kitoh, Akihiko
    Ono, Masahiro
    Naoe, Yoshinori
    Ohkura, Naganari
    Yamaguchi, Tomoyuki
    Yaguchi, Hiroko
    Kitabayashi, Issay
    Tsukada, Toshihiko
    Nomura, Takashi
    Miyachi, Yoshiki
    Taniuchi, Ichiro
    Sakaguchi, Shimon
    IMMUNITY, 2009, 31 (04) : 609 - 620
  • [22] Aire-dependent thymic FoxP3+ regulatory T cells in Type 1 Diabetes
    Bridge, Jennifer Anne
    Yuen, Benjamin
    Dong, Shen
    Ye, Jimmy
    Kappler, John W.
    Bluestone, Jeffrey A.
    Anderson, Mark S.
    JOURNAL OF IMMUNOLOGY, 2018, 200 (01):
  • [23] FOXP3+ regulatory T cells and their functional regulation
    Li, Zhiyuan
    Li, Dan
    Tsun, Andy
    Li, Bin
    CELLULAR & MOLECULAR IMMUNOLOGY, 2015, 12 (05) : 558 - 565
  • [24] Characterisation of porcine Foxp3+ regulatory T cells
    Kaeser, T.
    Gerner, W.
    Hammer, S. E.
    Patzl, M.
    Saalmueller, A.
    WIENER KLINISCHE WOCHENSCHRIFT, 2008, 120 : 172 - 172
  • [25] Functional stability of Foxp3+ regulatory T cells
    Martins, Maria da Silva
    Piccirillo, Ciriaco A.
    TRENDS IN MOLECULAR MEDICINE, 2012, 18 (08) : 454 - 462
  • [26] Developmental plasticity of Foxp3+ regulatory T cells
    Hori, Shohei
    CURRENT OPINION IN IMMUNOLOGY, 2010, 22 (05) : 575 - 582
  • [27] Molecular targets of FoxP3+ regulatory T cells
    Kim, Chang H.
    MINI-REVIEWS IN MEDICINAL CHEMISTRY, 2007, 7 (11) : 1136 - 1143
  • [28] Development and function of Foxp3+ regulatory T cells
    Wang, Yuan Min
    Ghali, Joanna
    Zhang, Geoff Yu
    Hu, Min
    Wang, Ya
    Sawyer, Andrew
    Zhou, Jimmy Jianheng
    Hapudeniya, Dhanushka A.
    Wang, Yiping
    Cao, Qi
    Zheng, Guoping
    Harris, David C.
    Alexander, Stephen I.
    NEPHROLOGY, 2016, 21 (02) : 81 - 85
  • [29] Helios expression in FoxP3+ T regulatory cells
    Elkord, Eyad
    Al-Ramadi, Basel K.
    EXPERT OPINION ON BIOLOGICAL THERAPY, 2012, 12 (11) : 1423 - 1425
  • [30] FOXP3+ regulatory T cells and their functional regulation
    Zhiyuan Li
    Dan Li
    Andy Tsun
    Bin Li
    Cellular & Molecular Immunology, 2015, 12 : 558 - 565