CD8-β ADP-ribosylation affects CD8+ T-cell function

被引:21
|
作者
Lischke, Timo [1 ]
Schumacher, Valea [1 ]
Wesolowski, Janusz [1 ]
Hurwitz, Robert [2 ]
Haag, Friedrich [1 ]
Koch-Nolte, Friedrich [1 ]
Mittruecker, Hans-Willi [1 ]
机构
[1] Univ Med Ctr Hamburg Eppendorf, Inst Immunol, D-20251 Hamburg, Germany
[2] Max Planck Inst Infect Biol, Core Facil Biochem & Prot Purificat, Berlin, Germany
关键词
Antibodies; Cell surface molecules; T cells; Transgenic; knockout mice; NICOTINAMIDE ADENINE-DINUCLEOTIDE; RIBOSYLTRANSFERASE ART2.2; EXTRACELLULAR ATP; P2X7; PURINOCEPTOR; MOUSE LYMPHOCYTES; SURFACE-PROTEINS; ION-CHANNEL; IN-VIVO; NAD; RESPONSES;
D O I
10.1002/eji.201243231
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
The CD8 coreceptor is crucial for effective peptide: MHC-I recognition by the TCR of CD8(+) T cells. Adenosine diphosphate ribosyl transferase 2.2 (ART2.2) utilizes extracellular NAD(+) to transfer ADP-ribose to arginine residues of extracellular domains of surface proteins. Here, we show that in the presence of extracellular NAD(+), ART2.2 caused ADP-ribosylation of CD8- on murine CD8(+) T cells in vitro and in vivo. Treatment with NAD(+) prevented binding of anti-CD8- mAb YTS156.7.7 but not of mAb H35-17.2, indicating that NAD(+) caused modification of certain epitopes and not a general loss of CD8-. Loss of antibody binding was strictly dependent on ART2.2, because it was not observed on ART2-deficient T cells or in the presence of inhibitory anti-ART2.2 single-domain antibodies. ADP-ribosylation of CD8- occurred during cell isolation, particularly when cells were isolated from CD38-deficient mice. Incubation of ART2-expressing, but not of ART2-deficient, OVA-specific CD8(+) T cells with NAD(+) interfered with binding of OVA(257-264):MHC-I tetramers. In line with this result, treatment of WT mice with NAD(+) resulted in reduced CD8(+) T-cell mediated cytotoxicity in vivo. We propose that ADP-ribosylation of CD8- can regulate the coreceptor function of CD8 in the presence of elevated levels of extracellular NAD(+).
引用
收藏
页码:1828 / 1838
页数:11
相关论文
共 50 条
  • [21] Reversing CD8+ T-cell exhaustion with DLI
    Martin, Paul J.
    BLOOD, 2014, 123 (09) : 1289 - 1290
  • [22] Hepatic effector CD8+ T-cell dynamics
    Matteo Iannacone
    Cellular & Molecular Immunology, 2015, 12 : 269 - 272
  • [23] Molecular Dissection of CD8+ T-Cell Dysfunction
    Wang, Chao
    Singer, Meromit
    Anderson, Ana C.
    TRENDS IN IMMUNOLOGY, 2017, 38 (08) : 567 - 576
  • [24] Shaping and reshaping CD8+ T-cell memory
    Harty, John T.
    Badovinac, Vladimir P.
    NATURE REVIEWS IMMUNOLOGY, 2008, 8 (02) : 107 - 119
  • [25] Hepatic effector CD8+ T-cell dynamics
    Iannacone, Matteo
    CELLULAR & MOLECULAR IMMUNOLOGY, 2015, 12 (03) : 269 - 272
  • [26] CD8+ T-cell senescence: no role for mTOR
    Henson, Sian M.
    BIOCHEMICAL SOCIETY TRANSACTIONS, 2015, 43 : 734 - 739
  • [27] CD8+ T-CELL IMMUNITY TO TOXOPLASA GONDII
    KASPER, LH
    ELY, K
    KHAN, IA
    JOURNAL OF CELLULAR BIOCHEMISTRY, 1993, : 80 - 80
  • [28] CD8+ T-cell clones in old mice
    Ku, CC
    Kotzin, B
    Kappler, J
    Marrack, P
    IMMUNOLOGICAL REVIEWS, 1997, 160 : 139 - 144
  • [29] Integrase inhibitor negatively affects CD8 T-cell function
    Richter, E.
    Korencak, M.
    Bornemann, L.
    Juszczak, P.
    Schuster, M.
    Gunzer, M.
    Esser, S.
    Streeck, H.
    HIV MEDICINE, 2019, 20 : 188 - 189
  • [30] CD8+ but not CD8- dendritic cells cross-prime cytotoxic T cells in vivo
    den Haan, JMM
    Lehar, SM
    Bevan, MJ
    JOURNAL OF EXPERIMENTAL MEDICINE, 2000, 192 (12): : 1685 - 1695