Literature DB >> 8977322

Peripheral tolerance of CD4 T cells following local activation in adolescent mice.

I Förster1, I Lieberam.   

Abstract

In addition to thymic T cell selection, post-thymic mechanisms of tolerance induction are required to eliminate autoreactive T cells with specificities for peripheral self antigens. While CD8+ T cells can recognize their target antigen on a wide variety of cell types, CD4+ T cells generally depend on the presence of specialized antigen-presenting cells. Because of this fundamental difference in antigen recognition peripheral tolerance of CD4+ T cells appears more difficult to achieve than of CD8+ T cells. Utilizing T cell receptor (TCR)-transgenic mice in which CD4+ T cells specific for a pancreatic beta cell neoantigen (the simian virus 40 T antigen) are constantly generated at low frequency, we have now established a mouse model of peripheral, tissue-specific CD4+ T cell tolerance. In these animals, tolerance is preceded by a phase of activation of the autoreactive T cells as characterized by up-regulation of CD69 and CD44, and down-regulation of the L-selectin lymph node homing receptor. T antigen-specific T cells bearing this phenotype can be detected in the local lymphoid environment of the pancreas but not in more remote locations like axillary or inguinal lymph nodes. The proportion of activated, autoreactive T cells is maximal at 2-3 weeks of age, after which these cells are gradually deleted from the peripheral lymphocyte pool. We further demonstrate that deletion of the autoreactive T cells does not occur in TCR-transgenic mice bred to the RAG-1-deficient background in which the transgenic T cells represent the only functional lymphocyte population.

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Year:  1996        PMID: 8977322     DOI: 10.1002/eji.1830261253

Source DB:  PubMed          Journal:  Eur J Immunol        ISSN: 0014-2980            Impact factor:   5.532


  23 in total

1.  Ontogeny of T cell tolerance to peripherally expressed antigens.

Authors:  D J Morgan; C Kurts; H T Kreuwel; K L Holst; W R Heath; L A Sherman
Journal:  Proc Natl Acad Sci U S A       Date:  1999-03-30       Impact factor: 11.205

2.  Cholera toxin B subunit as a carrier molecule promotes antigen presentation and increases CD40 and CD86 expression on antigen-presenting cells.

Authors:  A George-Chandy; K Eriksson; M Lebens; I Nordström; E Schön; J Holmgren
Journal:  Infect Immun       Date:  2001-09       Impact factor: 3.441

Review 3.  Alternatives to immunosuppressive drugs in human islet transplantation.

Authors:  Alison Anne Cotterell; Norma Sue Kenyon
Journal:  Curr Diab Rep       Date:  2002-08       Impact factor: 4.810

Review 4.  Immunological self/nonself discrimination: integration of self vs nonself during cognate T cell interactions with antigen-presenting cells.

Authors:  M D Mannie
Journal:  Immunol Res       Date:  1999       Impact factor: 2.829

5.  Site-specific regulation of tissue dendritic cell function by granulocyte-macrophage colony-stimulating-factor.

Authors:  Joanne Lees; David Boam; Tanakorn Proungvitaya; Peter J Wood
Journal:  Immunology       Date:  2004-12       Impact factor: 7.397

6.  Pancreatic NOD beta cells express MHC class II protein and the frequency of I-A(g7) mRNA-expressing beta cells strongly increases during progression to autoimmune diabetes.

Authors:  U Walter; T Toepfer; K E J Dittmar; K Kretschmer; J Lauber; S Weiss; G Servos; O Lechner; W A Scherbaum; S R Bornstein; H Von Boehmer; J Buer
Journal:  Diabetologia       Date:  2003-07-10       Impact factor: 10.122

7.  Restricted autoantigen recognition associated with deletional and adaptive regulatory mechanisms.

Authors:  John A Gebe; Betty B Yue; Kelly A Unrath; Ben A Falk; Gerald T Nepom
Journal:  J Immunol       Date:  2009-06-17       Impact factor: 5.422

8.  The induction of tolerance by dendritic cells that have captured apoptotic cells.

Authors:  R M Steinman; S Turley; I Mellman; K Inaba
Journal:  J Exp Med       Date:  2000-02-07       Impact factor: 14.307

9.  CD4+ T cell tolerance to parenchymal self-antigens requires presentation by bone marrow-derived antigen-presenting cells.

Authors:  A J Adler; D W Marsh; G S Yochum; J L Guzzo; A Nigam; W G Nelson; D M Pardoll
Journal:  J Exp Med       Date:  1998-05-18       Impact factor: 14.307

10.  Antigen presentation by dendritic cells in vivo.

Authors:  Evelyne Mougneau; Stéphanie Hugues; Nicolas Glaichenhaus
Journal:  J Exp Med       Date:  2002-10-21       Impact factor: 14.307

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