Modulation of STAT1 protein levels: a mechanism shaping CD8 T-cell responses in vivo

被引:80
|
作者
Gil, MP [1 ]
Salomon, R [1 ]
Louten, J [1 ]
Biron, CA [1 ]
机构
[1] Brown Univ, Dept Mol Microbiol & Immunol, Div Biol & Med, Providence, RI 02912 USA
关键词
D O I
10.1182/blood-2005-07-2834
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Type 1 interferons (IFNs) are induced in vivo, administered therapeutically, and potential targets for amelioration of autoimmune diseases. The cytokines mediate profound antiproliferative effects. Signal transducer and activator of transcription 1 (STAT1)-dependent signaling pathways are required for inhibition of proliferation, and viral infections can elicit high levels of type 1 IFNs as well as total STAT1 protein expression. Thus, a mechanism must be in place to help antigen-specific T cells overcome IFN-induced inhibition of proliferation. The studies reported here demonstrate that total CD8 T-cell proliferation in the presence of IFNs, ex vivo in response to cytokines and in vivo during viral infection, is inhibited through a STAT1-dependent mechanism. In contrast, major proportions of antigen-specific CD8, but not CD4, T cells are rendered less sensitive to this inhibition, express lower endogenous levels of total STAT1, and are selectively proliferating in the of type 1 IFN, at key times after viral challenge. Taken together, these novel results show that differential STAT1 expression is used by the immune system to modify cytokine-mediated effects on T-cell expansion and have implications for the consequences of therapeutic intervention in cytokine function.
引用
收藏
页码:987 / 993
页数:7
相关论文
共 50 条
  • [1] Decreased Levels of STAT1 and Interferon-γ-Induced STAT1 Phosphorylation in Rheumatoid Arthritis CD4 and CD8 T Cells
    Sharma, Vishal
    Pope, Brandon J.
    Santiago, Nathan, V
    Boland, Molly T.
    Sun, Dongmei
    Reynolds, Richard J.
    Szalai, Alexander J.
    Bridges, S. Louis, Jr.
    Raman, Chander
    ACR OPEN RHEUMATOLOGY, 2021, 3 (04) : 277 - 283
  • [2] Type 1 Interferons and Antiviral CD8 T-Cell Responses
    Welsh, Raymond M.
    Bahl, Kapil
    Marshall, Heather D.
    Urban, Stina L.
    PLOS PATHOGENS, 2012, 8 (01)
  • [3] Regulation of Antiviral CD8 T-Cell Responses
    Kulinski, Joseph M.
    Tarakanova, Vera L.
    Verbsky, James
    CRITICAL REVIEWS IN IMMUNOLOGY, 2013, 33 (06) : 477 - 488
  • [4] SHP-1 regulation of in vivo CD8 T cell responses
    Fowler, Carla
    Pao, Lily
    Schietinger, Andrea
    Tan, Xiaoxia
    Blattman, Joseph
    Greenberg, Philip
    JOURNAL OF IMMUNOLOGY, 2009, 182
  • [5] CD8 T-Cell Responses Against Cyclin B1
    Andersen, Rikke Sick
    Sorensen, Rikke Baek
    Andersen, Mads Hald
    Straten, Per Thor
    CLINICAL CANCER RESEARCH, 2009, 15 (22) : 7106 - 7108
  • [6] Shaping Successful and Unsuccessful CD8 T Cell Responses Following Infection
    Cox, Maureen A.
    Zajac, Allan J.
    JOURNAL OF BIOMEDICINE AND BIOTECHNOLOGY, 2010,
  • [7] Dendritic Cell Internalization of α-Galactosylceramide from CD8 T Cells Induces Potent Antitumor CD8 T-cell Responses
    Choi, Dong Hoon
    Kim, Kwang Soon
    Yang, Se Hwan
    Chung, Doo Hyun
    Song, Boyeong
    Sprent, Jonathan
    Cho, Jae Ho
    Sung, Young Chul
    CANCER RESEARCH, 2011, 71 (24) : 7442 - 7451
  • [8] Peripheral CD8 T-Cell responses to apoptotic cell proteins and peptides
    Peng, Yu Feng
    Eikon, Keith B.
    CRITICAL REVIEWS IN IMMUNOLOGY, 2007, 27 (04) : 357 - 365
  • [9] AUTOREACTIVE CD8(+) T-CELL RESPONSES TO HUMAN MYELIN PROTEIN-DERIVED PEPTIDES
    TSUCHIDA, T
    PARKER, KC
    TURNER, RV
    MCFARLAND, HF
    COLIGAN, JE
    BIDDISON, WE
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (23) : 10859 - 10863
  • [10] Transcriptional Regulation during CD8 T-Cell Immune Responses
    Munitic, Ivana
    Evaristo, Cesar
    Sung, Hsueh Cheng
    Rocha, Benedita
    MEMORY T CELLS, 2010, 684 : 11 - 27