Home LiteratureArticle Details
PMID: 12417628 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Failure to censor forbidden clones of CD4 T cells in autoimmune diabetes.

The Journal of experimental medicine ·Vol. 196 ·No. 9 ·2002-11-04 ·Pages 1175-88

Lesage S, Hartley SB, Akkaraju S, Wilson J, Townsend M, Goodnow CC

Abstract

Type 1 diabetes and other organ-specific autoimmune diseases often cluster together in human families and in congenic strains of NOD (nonobese diabetic) mice, but the inherited immunoregulatory defects responsible for these diseases are unknown. Here we track the fate of high avidity CD4 T cells recognizing a self-antigen expressed in pancreatic islet beta cells using a transgenic mouse model. T cells of identical specificity, recognizing a dominant peptide from the same islet antigen and major histocompatibility complex (MHC)-presenting molecule, were followed on autoimmune susceptible and resistant genetic backgrounds. We show that non-MHC genes from the NOD strain cause a failure to delete these high avidity autoreactive T cells during their development in the thymus, with subsequent spontaneous breakdown of CD4 cell tolerance to the islet antigen, formation of intra-islet germinal centers, and high titre immunoglobulin G1 autoantibody production. In mixed bone marrow chimeric animals, defective thymic deletion was intrinsic to T cells carrying diabetes susceptibility genes. These results demonstrate a primary failure to censor forbidden clones of self-reactive T cells in inherited susceptibility to organ-specific autoimmune disease, and highlight the importance of thymic mechanisms of tolerance in organ-specific tolerance.

MeSH Terms
Animals Autoantigens/immunology CD4-Positive T-Lymphocytes/immunology Diabetes Mellitus, Type 1/immunology Female Islets of Langerhans/immunology Male Mice Mice, Inbred NOD Mice, Transgenic Self Tolerance/immunology
Chemicals
Autoantigens
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Lesage Sylvie
Australian Cancer Research Foundation Genetics Lab, Medical Genome Centre, John Curtin School of Medical Research, Australian National University, Canberra ACT 2601, Australia.
Hartley Suzanne B
Akkaraju Srinivas
Wilson Judith
Townsend Michelle
Goodnow Christopher C
References (67)
67 references, click to expand
  1. Defective CD8+ T cell peripheral tolerance in nonobese diabetic mice.
    J Immunol. 2001 Jul 15;167(2):1112-7 PMID: 11441123
  2. Development of spontaneous autoimmune peripheral polyneuropathy in B7-2-deficient NOD mice.
    J Exp Med. 2001 Sep 3;194(5):677-84 PMID: 11535635
  3. Genetic protection from the inflammatory disease type 1 diabetes in humans and animal models.
    Immunity. 2001 Sep;15(3):387-95 PMID: 11567629
  4. Thymus and autoimmunity: production of CD25+CD4+ naturally anergic and suppressive T cells as a key function of the thymus in maintaining immunologic self-tolerance.
    J Immunol. 1999 May 1;162(9):5317-26 PMID: 10228007
  5. Antigen concentration and precursor frequency determine the rate of CD8+ T cell tolerance to peripherally expressed antigens.
    J Immunol. 1999 Jul 15;163(2):723-7 PMID: 10395663
  6. The role of MHC class II molecules in susceptibility to type I diabetes: identification of peptide epitopes and characterization of the T cell repertoire.
    Proc Natl Acad Sci U S A. 1999 Aug 3;96(16):9299-304 PMID: 10430937
  7. Differential tolerance is induced in T cells recognizing distinct epitopes of myelin basic protein.
    Immunity. 1998 May;8(5):571-80 PMID: 9620678
  8. Endogenous myelin basic protein inactivates the high avidity T cell repertoire.
    J Exp Med. 1998 Jun 15;187(12):2055-63 PMID: 9625765
  9. CD4 T cell tolerance to human C-reactive protein, an inducible serum protein, is mediated by medullary thymic epithelium.
    J Exp Med. 1998 Jul 6;188(1):5-16 PMID: 9653079
  10. Shaping of the autoreactive T-cell repertoire by a splice variant of self protein expressed in thymic epithelial cells.
    Nat Med. 2000 Jan;6(1):56-61 PMID: 10613824
  11. Normal lymphoid homeostasis and lack of lethal autoimmunity in mice containing mature T cells with severely impaired IL-2 receptors.
    J Immunol. 2000 Mar 15;164(6):2905-14 PMID: 10706676
  12. NKT cells derive from double-positive thymocytes that are positively selected by CD1d.
    Nat Immunol. 2001 Oct;2(10):971-8 PMID: 11550008
  13. Promiscuous gene expression in medullary thymic epithelial cells mirrors the peripheral self.
    Nat Immunol. 2001 Nov;2(11):1032-9 PMID: 11600886
  14. A defect in central tolerance in NOD mice.
    Nat Immunol. 2001 Nov;2(11):1025-31 PMID: 11668341
  15. Understanding autoimmune diabetes: insights from mouse models.
    Trends Mol Med. 2002 Jan;8(1):31-8 PMID: 11796264
  16. The NOD mouse: recessive diabetogenic gene in the major histocompatibility complex.
    Science. 1986 Feb 14;231(4739):733-5 PMID: 3003909
  17. Identification of the T-cell and Ia contact residues of a T-cell antigenic epitope.
    Nature. 1987 Jun 25-Jul 1;327(6124):713-5 PMID: 2439915
  18. Tolerance induced by thymic epithelial grafts in birds.
    Science. 1987 Aug 28;237(4818):1032-5 PMID: 3616623
  19. Defective activation of T suppressor cell function in nonobese diabetic mice. Potential relation to cytokine deficiencies.
    J Immunol. 1988 Jun 1;140(11):3801-7 PMID: 2897395
  20. Autoimmune diseases: the failure of self tolerance.
    Science. 1990 Jun 15;248(4961):1380-8 PMID: 1972595
  21. Ablation of "tolerance" and induction of diabetes by virus infection in viral antigen transgenic mice.
    Cell. 1991 Apr 19;65(2):305-17 PMID: 1901764
  22. Genetic analysis of autoimmune type 1 diabetes mellitus in mice.
    Nature. 1991 Jun 13;351(6327):542-7 PMID: 1675432
  23. The murine autoimmune diabetes model: NOD and related strains.
    Adv Immunol. 1992;51:285-322 PMID: 1323922
  24. Autoimmune diabetes as a consequence of locally produced interleukin-2.
    Nature. 1992 Oct 8;359(6395):547-9 PMID: 1406974
  25. Evidence that the T cell repertoire of normal rats contains cells with the potential to cause diabetes. Characterization of the CD4+ T cell subset that inhibits this autoimmune potential.
    J Exp Med. 1993 Mar 1;177(3):627-36 PMID: 8094734
  26. Transgenic mice that express a myelin basic protein-specific T cell receptor develop spontaneous autoimmunity.
    Cell. 1993 Feb 26;72(4):551-60 PMID: 7679952
  27. I-E+ nonobese diabetic mice develop insulitis and diabetes.
    J Exp Med. 1993 Sep 1;178(3):793-803 PMID: 8350054
  28. Polygenic control of autoimmune diabetes in nonobese diabetic mice.
    Nat Genet. 1993 Aug;4(4):404-9 PMID: 8401590
  29. Following a diabetogenic T cell from genesis through pathogenesis.
    Cell. 1993 Sep 24;74(6):1089-100 PMID: 8402882
  30. Resting and anergic B cells are defective in CD28-dependent costimulation of naive CD4+ T cells.
    J Exp Med. 1994 May 1;179(5):1539-49 PMID: 7909325
  31. T-cell tolerance toward a transgenic beta-cell antigen and transcription of endogenous pancreatic genes in thymus.
    Proc Natl Acad Sci U S A. 1994 Jul 5;91(14):6707-11 PMID: 8022837
  32. High incidence of spontaneous autoimmune encephalomyelitis in immunodeficient anti-myelin basic protein T cell receptor transgenic mice.
    Cell. 1994 Aug 12;78(3):399-408 PMID: 7520367
  33. On the various manifestations of spontaneous autoimmune diabetes in rodent models.
    Eur J Immunol. 1994 Dec;24(12):3155-60 PMID: 7528672
  34. A role for non-MHC genetic polymorphism in susceptibility to spontaneous autoimmunity.
    Immunity. 1994 Apr;1(1):73-83 PMID: 7889402
  35. Genetic and pathogenic basis of autoimmune diabetes in NOD mice.
    Curr Opin Immunol. 1994 Dec;6(6):900-6 PMID: 7710714
  36. Genetic control of autoimmune diabetes in the NOD mouse.
    Annu Rev Immunol. 1995;13:179-200 PMID: 7612220
  37. Crosses of NOD mice with the related NON strain. A polygenic model for IDDM.
    Diabetes. 1995 Oct;44(10):1186-95 PMID: 7556956
  38. Type 1 diabetes and the control of dexamethazone-induced apoptosis in mice maps to the same region on chromosome 6.
    Genomics. 1995 Aug 10;28(3):398-404 PMID: 7490073
  39. Programmed cell death in the pathogenesis of murine IDDM: resistance to apoptosis induced in lymphocytes by cyclophosphamide.
    J Autoimmun. 1996 Apr;9(2):271-6 PMID: 8738973
  40. Evidence for a thymus-dependent form of tolerance that is not based on elimination or anergy of reactive T cells.
    Immunol Rev. 1996 Feb;149:35-53 PMID: 9005218
  41. Iodine-induced autoimmune thyroiditis in NOD-H-2h4 mice.
    Clin Immunol Immunopathol. 1996 Dec;81(3):287-92 PMID: 8938107
  42. Early quantitative and functional deficiency of NK1+-like thymocytes in the NOD mouse.
    Eur J Immunol. 1996 Dec;26(12):2989-98 PMID: 8977295
  43. Insulin expression in human thymus is modulated by INS VNTR alleles at the IDDM2 locus.
    Nat Genet. 1997 Mar;15(3):289-92 PMID: 9054944
  44. The insulin gene is transcribed in the human thymus and transcription levels correlated with allelic variation at the INS VNTR-IDDM2 susceptibility locus for type 1 diabetes.
    Nat Genet. 1997 Mar;15(3):293-7 PMID: 9054945
  45. Association between alphabetaTCR+CD4-CD8- T-cell deficiency and IDDM in NOD/Lt mice.
    Diabetes. 1997 Apr;46(4):572-82 PMID: 9075796
  46. Apoptosis resistance of nonobese diabetic peripheral lymphocytes linked to the Idd5 diabetes susceptibility region.
    Proc Natl Acad Sci U S A. 1997 Aug 5;94(16):8670-4 PMID: 9238035
  47. A range of CD4 T cell tolerance: partial inactivation to organ-specific antigen allows nondestructive thyroiditis or insulitis.
    Immunity. 1997 Aug;7(2):255-71 PMID: 9285410
  48. Impaired plasma membrane targeting of Grb2-murine son of sevenless (mSOS) complex and differential activation of the Fyn-T cell receptor (TCR)-zeta-Cbl pathway mediate T cell hyporesponsiveness in autoimmune nonobese diabetic mice.
    J Exp Med. 1997 Sep 15;186(6):887-97 PMID: 9294143
  49. Pancreatic gene expression in rare cells of thymic medulla: evidence for functional contribution to T cell tolerance.
    Int Immunol. 1997 Sep;9(9):1355-65 PMID: 9310839
  50. Spontaneous autoimmune diabetes in monoclonal T cell nonobese diabetic mice.
    J Exp Med. 1997 Nov 17;186(10):1663-76 PMID: 9362527
  51. Analysis of susceptibility of NOD mice to spontaneous and experimentally induced thyroiditis.
    Eur J Immunol. 1997 Nov;27(11):2854-62 PMID: 9394810
  52. Positional cloning of the APECED gene.
    Nat Genet. 1997 Dec;17(4):393-8 PMID: 9398839
  53. An autoimmune disease, APECED, caused by mutations in a novel gene featuring two PHD-type zinc-finger domains.
    Nat Genet. 1997 Dec;17(4):399-403 PMID: 9398840
  54. The nonobese diabetic mouse as a model of autoimmune diabetes: immune dysregulation gets the NOD.
    Immunity. 1997 Dec;7(6):727-38 PMID: 9430219
  55. Genetic control of diabetes progression.
    Immunity. 1997 Dec;7(6):873-83 PMID: 9430232
  56. Autoreactivity of T cells from nonobese diabetic mice: an I-Ag7-dependent reaction.
    Proc Natl Acad Sci U S A. 1998 Feb 17;95(4):1721-4 PMID: 9465083
  57. The Fas/Fas ligand pathway and Bcl-2 regulate T cell responses to model self and foreign antigens.
    Immunity. 1998 Feb;8(2):265-74 PMID: 9492007
  58. CD4+CD25+ T cells inhibit both the induction and effector function of autoreactive T cells and represent a unique lineage of immunoregulatory cells.
    J Immunol. 1998 Feb 1;160(3):1212-8 PMID: 9570536
  59. Subcongenic analysis of the Idd13 locus in NOD/Lt mice: evidence for several susceptibility genes including a possible diabetogenic role for beta 2-microglobulin.
    J Immunol. 1998 Feb 1;160(3):1472-8 PMID: 9570569
  60. Analysis of the role of variation of major histocompatibility complex class II expression on nonobese diabetic (NOD) peripheral T cell response.
    J Exp Med. 1998 Dec 21;188(12):2267-75 PMID: 9858513
  61. Two mechanisms for the non-MHC-linked resistance to spontaneous autoimmunity.
    J Immunol. 1999 Apr 15;162(8):4614-26 PMID: 10202001
  62. Costimulatory regulation of T cell function.
    Curr Opin Cell Biol. 1999 Apr;11(2):203-10 PMID: 10209159
  63. B7/CD28 costimulation is essential for the homeostasis of the CD4+CD25+ immunoregulatory T cells that control autoimmune diabetes.
    Immunity. 2000 Apr;12(4):431-40 PMID: 10795741
  64. RNA and protein expression of the murine autoimmune regulator gene (Aire) in normal, RelB-deficient and in NOD mouse.
    Eur J Immunol. 2000 Jul;30(7):1884-93 PMID: 10940877
  65. NOD Idd5 locus controls insulitis and diabetes and overlaps the orthologous CTLA4/IDDM12 and NRAMP1 loci in humans.
    Diabetes. 2000 Oct;49(10):1744-7 PMID: 11016460
  66. Tolerance to islet autoantigens in type 1 diabetes.
    Annu Rev Immunol. 2001;19:131-61 PMID: 11244033
  67. Thymic selection of CD4+CD25+ regulatory T cells induced by an agonist self-peptide.
    Nat Immunol. 2001 Apr;2(4):301-6 PMID: 11276200
Article Info
Journal
The Journal of experimental medicine
Abbr.
J Exp Med
ISSN
0022-1007
Published
2002-11-04
Pages
1175-88
Language
English
Region
United States
NLM ID
2985109R
PMCID
PMC2194101
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]