Ndrg1 is a T-cell clonal anergy factor negatively regulated by CD28 costimulation and interleukin-2

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作者
Yu Mi Oh
Hyung Bae Park
Jae Hun Shin
Ji Eun Lee
Ha Young Park
Dhong Hyo Kho
Jun Sung Lee
Heonsik Choi
Tomohiko Okuda
Koichi Kokame
Toshiyuki Miyata
In-Hoo Kim
Seung Hoon Lee
Ronald H. Schwartz
Kyungho Choi
机构
[1] Seoul National University College of Medicine,Department of Biochemistry and Molecular Biology
[2] Seoul National University College of Medicine,Department of Biomedical Sciences
[3] 103 Daehak-ro,Department of Molecular Pathogenesis
[4] Chongno-gu,undefined
[5] Seoul 110-799,undefined
[6] Korea,undefined
[7] Specific Organs Cancer Branch,undefined
[8] Research Institute National Cancer Center,undefined
[9] Hematologic Malignancy Branch,undefined
[10] Research Institute National Cancer Center,undefined
[11] Laboratory of Cellular and Molecular Immunology,undefined
[12] National Institute of Allergy and Infectious Diseases,undefined
[13] National Institutes of Health,undefined
[14] National Cerebral and Cardiovascular Center,undefined
[15] Molecular Imaging and Therapy Branch,undefined
[16] Research Institute National Cancer Center,undefined
[17] Present address: Department of Immunobiology,undefined
[18] Yale University School of Medicine,undefined
[19] New Haven,undefined
[20] Connecticut 06520,undefined
[21] USA.,undefined
[22] Present address: Department of Pathology and Oncology,undefined
[23] Karmanos Cancer Institute,undefined
[24] Wayne State University School of Medicine,undefined
[25] Detroit,undefined
[26] Michigan 48201,undefined
[27] USA.,undefined
[28] Present address: Green Cross Corporation,undefined
[29] Gyeonggi-Do 446-850,undefined
[30] Korea.,undefined
[31] Present address: Kolon life science inc.,undefined
[32] Seoul 153-769,undefined
[33] Korea.,undefined
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摘要
Induction of T-cell clonal anergy involves serial activation of transcription factors, including NFAT and Egr2/3. However, downstream effector mechanisms of these transcription factors are not fully understood yet. Here we identify Ndrg1 as an anergy factor induced by Egr2. Ndrg1 is upregulated by anergic signalling and maintained at high levels in resting anergic T cells. Overexpression of Ndrg1 mimics the anergic state and knockout of the gene prevents anergy induction. Interestingly, Ndrg1 is phosphorylated and degraded by CD28 signalling in a proteasome-dependent manner, explaining the costimulation dependence of anergy prevention. Similarly, IL-2 treatment of anergic T cells, under conditions that lead to the reversal of anergy, also induces Ndrg1 phosphorylation and degradation. Finally, older Ndrg1-deficient mice show T-cell hyperresponsiveness and Ndrg1-deficient T cells aggravate inducible autoimmune inflammation. Thus, Ndrg1 contributes to the maintenance of clonal anergy and inhibition of T-cell-mediated inflammation.
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