Functional Delineation and Differentiation Dynamics of Human CD4+ T Cells Expressing the FoxP3 Transcription Factor

被引:1871
|
作者
Miyara, Makoto [1 ]
Yoshioka, Yumiko [1 ]
Kitoh, Akihiko [1 ]
Shima, Tomoko [1 ]
Wing, Kajsa [1 ]
Niwa, Akira [2 ]
Parizot, Christophe [3 ]
Taflin, Cecile [3 ]
Heike, Toshio [2 ]
Valeyre, Dominique [4 ]
Mathian, Alexis [3 ]
Nakahata, Tatsutoshi [2 ]
Yamaguchi, Tomoyuki [1 ]
Nomura, Takashi [1 ]
Ono, Masahiro [1 ]
Amoura, Zahir [5 ,6 ]
Gorochov, Guy [3 ,6 ]
Sakaguchi, Shimon [1 ,7 ,8 ]
机构
[1] Kyoto Univ, Inst Frontier Med Sci, Dept Expt Pathol, Kyoto 6068507, Japan
[2] Kyoto Univ, Grad Sch Med, Dept Pediat, Kyoto 6068507, Japan
[3] Hop La Pitie Salpetriere, Lab AP HP Immunol Cellulaire & Tissulaire, INSERM, UMR S 945, F-75013 Paris, France
[4] Hop Avicenne, AP HP, Dept Pneumol, F-93000 Bobigny, France
[5] Hop La Pitie Salpetriere, AP HP, Dept Internal Med, F-75013 Paris, France
[6] Univ Paris 06, F-75005 Paris, France
[7] Japan Sci & Technol Agcy, CREST, Kawaguchi, Saitama 3320012, Japan
[8] Osaka Univ, WPI Immunol Frontier Res Ctr, Suita, Osaka 5650871, Japan
基金
日本学术振兴会;
关键词
ARYL-HYDROCARBON RECEPTOR; PERIPHERAL-BLOOD; REGULATORY CELLS; IN-VITRO; HELPER-CELLS; NAIVE; POPULATION; IDENTIFICATION; PROLIFERATION; SUBPOPULATION;
D O I
10.1016/j.immuni.2009.03.019
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
FoxP3 is a key transcription factor for the development and function of natural CD4(+) regulatory T cells (Treg cells). Here we show that human FoxP3(+)CD4(+) T cells were composed of three phenotypically and functionally distinct subpopulations: CD45RA(+)FoxP3(lo) resting Treg cells (rTreg cells) and CD45RA(-)FoxP3(hi) activated Treg cells (aTreg cells), both of which were suppressive in vitro, and cytokine-secreting CD45RA(-)FoxP3(lo) nonsuppressive T cells. The proportion of the three subpopulations differed between cord blood, aged individuals, and patients with immunological diseases. Terminally differentiated aTreg cells rapidly died whereas rTreg cells proliferated and converted into aTreg cells in vitro and in vivo. This was shown by the transfer of rTreg cells into NOD-scid-common gamma-chain-deficient mice and by TCR sequence-based T cell clonotype tracing in peripheral blood in a normal individual. Taken together, the dissection of FoxP3(+) cells into subsets enables one to analyze Treg cell differentiation dynamics and interactions in normal and disease states, and to control immune responses through manipulating particular FoxP3(+) subpopulations.
引用
收藏
页码:899 / 911
页数:13
相关论文
共 50 条
  • [21] The Importance of Foxp3 Antibody and Fixation/Permeabilization Buffer Combinations in Identifying CD4+CD25+Foxp3+ Regulatory T Cells
    Law, Jacqueline P.
    Hirschkorn, Dale F.
    Owen, Rachel E.
    Biswas, Hope H.
    Norris, Philip J.
    Lanteri, Marion C.
    CYTOMETRY PART A, 2009, 75A (12) : 1040 - 1050
  • [22] CD80 on Human T Cells Is Associated With FoxP3 Expression and Supports Treg Homeostasis
    Soskic, Blagoje
    Jeffery, Louisa E.
    Kennedy, Alan
    Gardner, David H.
    Hou, Tie Zheng
    Halliday, Neil
    Williams, Cayman
    Janman, Daniel
    Rowshanravan, Behzad
    Hirschfield, Gideon M.
    Sansom, David M.
    FRONTIERS IN IMMUNOLOGY, 2021, 11
  • [23] Ectopic FOXP3 Expression Preserves Primitive Features Of Human Hematopoietic Stem Cells While Impairing Functional T Cell Differentiation
    de Sio, F. R. Santoni
    Passerini, L.
    Valente, M. M.
    Russo, F.
    Naldini, L.
    Roncarolo, M. G.
    Bacchetta, R.
    SCIENTIFIC REPORTS, 2017, 7
  • [24] Effect of HIF1α on Foxp3 expression in CD4+CD25- T lymphocytes
    Wu, Jianguo
    Cui, Hongyan
    Zhu, Zhifeng
    Wang, Li
    Li, Hong
    Wang, Desheng
    MICROBIOLOGY AND IMMUNOLOGY, 2014, 58 (07) : 409 - 415
  • [25] Interleukin 21 inhibits cancer-mediated FOXP3 induction in naive human CD4 T cells
    Kannappan, Vinodh
    Butcher, Kate
    Trela, Malgorzata
    Nicholl, Iain
    Wang, Weiguang
    Attridge, Kesley
    CANCER IMMUNOLOGY IMMUNOTHERAPY, 2017, 66 (05) : 637 - 645
  • [26] Human Colonic Myofibroblasts Promote Expansion of CD4+ CD25high Foxp3+ Regulatory T Cells
    Pinchuk, Irina V.
    Beswick, Ellen J.
    Saada, Jamal I.
    Boya, Gushyalatha
    Schmitt, David
    Raju, Gottumukkala S.
    Brenmoehl, Julia
    Rogler, Gerhard
    Reyes, Victor E.
    Powell, Don W.
    GASTROENTEROLOGY, 2011, 140 (07) : 2019 - 2030
  • [27] Human lung fibroblasts increase CD4(+)CD25(+)Foxp3(+) T cells in co-cultured CD4(+) lymphocytes
    Conte, Enrico
    Gili, Elisa
    Fruciano, Mary
    Fagone, Evelina
    Vancheri, Carlo
    CELLULAR IMMUNOLOGY, 2013, 285 (1-2) : 55 - 61
  • [28] The Transcription Factor E74-like Factor 4 Suppresses Differentiation of Proliferating CD4+ T Cells to the Th17 Lineage
    Lee, Ping-Hsien
    Puppi, Monica
    Schluns, Kimberly S.
    Yu-Lee, Li-Yuan
    Dong, Chen
    Lacorazza, H. Daniel
    JOURNAL OF IMMUNOLOGY, 2014, 192 (01) : 178 - 188
  • [29] Intratumoral Convergence of the TCR Repertoires of Effector and Foxp3+ CD4+ T cells
    Kuczma, Michal
    Kopij, Magdalena
    Pawlikowska, Iwona
    Wang, Cong-Yi
    Rempala, Grzegorz A.
    Kraj, Piotr
    PLOS ONE, 2010, 5 (10):
  • [30] Human regulatory T cells control TCR signaling and susceptibility to suppression in CD4+ T cells
    Chellappa, Stalin
    Lieske, Nora V.
    Hagness, Morten
    Line, Pal D.
    Tasken, Kjetil
    Aandahl, Einar M.
    JOURNAL OF LEUKOCYTE BIOLOGY, 2016, 100 (01) : 5 - 16