I-A super(g7)-Mediated Antigen Presentation by B Lymphocytes Is Critical in Overcoming a Checkpoint in T Cell Tolerance to Islet beta Cells of Nonobese Diabetic Mice
B cell-deficient nonobese diabetic (NOD) mice are protected from the development of spontaneous autoimmune diabetes, suggesting a requisite role for Ag presentation by B lymphocytes for the activation of a diabetogenic T cell repertoire. This study specifically examines the importance of B cell-medi...
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Veröffentlicht in: | The Journal of immunology (1950) 1999-07, Vol.163 (2), p.743-750 |
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creator | Noorchashm, H Lieu, Yen K Noorchashm, N Rostami, SY Greeley, SAS Schlachterman, A Song, H K Noto, LE Jevnikar, A M Barker, C F Naji, A |
description | B cell-deficient nonobese diabetic (NOD) mice are protected from the development of spontaneous autoimmune diabetes, suggesting a requisite role for Ag presentation by B lymphocytes for the activation of a diabetogenic T cell repertoire. This study specifically examines the importance of B cell-mediated MHC class II Ag presentation as a regulator of peripheral T cell tolerance to islet beta cells. We describe the construction of NOD mice with an I-A super(g7) deficiency confined to the B cell compartment. Analysis of these mice, termed NOD B super(CIID), revealed the presence of functionally competent non-B cell APCs (macrophages/dendritic cells) with normal I-A super(g7) expression and capable of activating Ag-reactive T cells. In addition, the secondary lymphoid organs of these mice harbored phenotypically normal CD4 super(+) and CD8 super(+) T cell compartments. Interestingly, whereas control NOD mice harboring I-A super(g7)-sufficient B cells developed diabetes spontaneously, NOD B super(CIID) mice were resistant to the development of autoimmune diabetes. Despite their diabetes resistance, histologic examination of pancreata from NOD B super(CIID) mice revealed foci of noninvasive peri-insulitis that could be intentionally converted into a destructive process upon treatment with cyclophosphamide. We conclude that I-A super(g7)-mediated Ag presentation by B cells serves to overcome a checkpoint in T cell tolerance to islet beta cells after their initial targeting has occurred. Overall, this work indicates that the full expression of the autoimmune potential of anti-islet T cells in NOD mice is intimately regulated by B cell-mediated MHC class II Ag presentation. |
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This study specifically examines the importance of B cell-mediated MHC class II Ag presentation as a regulator of peripheral T cell tolerance to islet beta cells. We describe the construction of NOD mice with an I-A super(g7) deficiency confined to the B cell compartment. Analysis of these mice, termed NOD B super(CIID), revealed the presence of functionally competent non-B cell APCs (macrophages/dendritic cells) with normal I-A super(g7) expression and capable of activating Ag-reactive T cells. In addition, the secondary lymphoid organs of these mice harbored phenotypically normal CD4 super(+) and CD8 super(+) T cell compartments. Interestingly, whereas control NOD mice harboring I-A super(g7)-sufficient B cells developed diabetes spontaneously, NOD B super(CIID) mice were resistant to the development of autoimmune diabetes. Despite their diabetes resistance, histologic examination of pancreata from NOD B super(CIID) mice revealed foci of noninvasive peri-insulitis that could be intentionally converted into a destructive process upon treatment with cyclophosphamide. We conclude that I-A super(g7)-mediated Ag presentation by B cells serves to overcome a checkpoint in T cell tolerance to islet beta cells after their initial targeting has occurred. 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This study specifically examines the importance of B cell-mediated MHC class II Ag presentation as a regulator of peripheral T cell tolerance to islet beta cells. We describe the construction of NOD mice with an I-A super(g7) deficiency confined to the B cell compartment. Analysis of these mice, termed NOD B super(CIID), revealed the presence of functionally competent non-B cell APCs (macrophages/dendritic cells) with normal I-A super(g7) expression and capable of activating Ag-reactive T cells. In addition, the secondary lymphoid organs of these mice harbored phenotypically normal CD4 super(+) and CD8 super(+) T cell compartments. Interestingly, whereas control NOD mice harboring I-A super(g7)-sufficient B cells developed diabetes spontaneously, NOD B super(CIID) mice were resistant to the development of autoimmune diabetes. Despite their diabetes resistance, histologic examination of pancreata from NOD B super(CIID) mice revealed foci of noninvasive peri-insulitis that could be intentionally converted into a destructive process upon treatment with cyclophosphamide. We conclude that I-A super(g7)-mediated Ag presentation by B cells serves to overcome a checkpoint in T cell tolerance to islet beta cells after their initial targeting has occurred. 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This study specifically examines the importance of B cell-mediated MHC class II Ag presentation as a regulator of peripheral T cell tolerance to islet beta cells. We describe the construction of NOD mice with an I-A super(g7) deficiency confined to the B cell compartment. Analysis of these mice, termed NOD B super(CIID), revealed the presence of functionally competent non-B cell APCs (macrophages/dendritic cells) with normal I-A super(g7) expression and capable of activating Ag-reactive T cells. In addition, the secondary lymphoid organs of these mice harbored phenotypically normal CD4 super(+) and CD8 super(+) T cell compartments. Interestingly, whereas control NOD mice harboring I-A super(g7)-sufficient B cells developed diabetes spontaneously, NOD B super(CIID) mice were resistant to the development of autoimmune diabetes. Despite their diabetes resistance, histologic examination of pancreata from NOD B super(CIID) mice revealed foci of noninvasive peri-insulitis that could be intentionally converted into a destructive process upon treatment with cyclophosphamide. We conclude that I-A super(g7)-mediated Ag presentation by B cells serves to overcome a checkpoint in T cell tolerance to islet beta cells after their initial targeting has occurred. Overall, this work indicates that the full expression of the autoimmune potential of anti-islet T cells in NOD mice is intimately regulated by B cell-mediated MHC class II Ag presentation.</abstract></addata></record> |
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title | I-A super(g7)-Mediated Antigen Presentation by B Lymphocytes Is Critical in Overcoming a Checkpoint in T Cell Tolerance to Islet beta Cells of Nonobese Diabetic Mice |
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