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Science 21 December 1990: Vol. 250. no. 4988, pp. 1720 - 1723 DOI: 10.1126/science.2125367
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Articles
Science, Vol 250, Issue 4988, 1720-1723
Copyright © 1990 by American Association for the Advancement of Science
Induction by antigen of intrathymic apoptosis of CD4+CD8+TCRlo thymocytes in vivo
KM Murphy,
AB Heimberger,
and
DY Loh
Department of Pathology, Washington University School of Medicine, St. Louis, MO 63110.
In order to examine the mechanisms by which clonal deletion of autoreactive T cells occurs, a peptide antigen was used to induce deletion of antigen-reactive thymocytes in vivo. Mice transgenic for a T cell receptor (TCR) that reacts to this peptide contain thymocytes that progress from the immature to the mature phenotype. Intraperitoneal administration of the peptide antigen to transgenic mice results in a rapid deletion of the immature CD4+ CD8+ TCRlo thymocytes. Apoptosis of cortical thymocytes can be seen within 20 hours of treatment. These results provide direct evidence for the in vivo role of apoptosis in the development of antigen-induced tolerance.
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- H. Hosokawa, M. Y. Kimura, R. Shinnakasu, A. Suzuki, T. Miki, H. Koseki, M. van Lohuizen, M. Yamashita, and T. Nakayama (2006)
J. Immunol.
177, 7656-7664
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- Control of Memory CD4 T Cell Recall by the CD28/B7 Costimulatory Pathway.
- M. P. Ndejembi, J. R. Teijaro, D. S. Patke, A. W. Bingaman, M. R. Chandok, A. Azimzadeh, S. G. Nadler, and D. L. Farber (2006)
J. Immunol.
177, 7698-7706
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- Role of nitric oxide in the regulation of T cell functions.
- W Niedbala, B Cai, and F Y Liew (2006)
Ann Rheum Dis
65, iii37-iii40
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- The p110{delta} Isoform of Phosphoinositide 3-Kinase Controls Clonal Expansion and Differentiation of Th Cells.
- K. Okkenhaug, D. T. Patton, A. Bilancio, F. Garcon, W. C. Rowan, and B. Vanhaesebroeck (2006)
J. Immunol.
177, 5122-5128
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- Distinct Characteristics of Murine STAT4 Activation in Response to IL-12 and IFN-{alpha}.
- L. S. Berenson, M. Gavrieli, J. D. Farrar, T. L. Murphy, and K. M. Murphy (2006)
J. Immunol.
177, 5195-5203
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- T Cell, Ig Domain, Mucin Domain-2 Gene-Deficient Mice Reveal a Novel Mechanism for the Regulation of Th2 Immune Responses and Airway Inflammation.
- P. D. Rennert, T. Ichimura, I. D. Sizing, V. Bailly, Z. Li, R. Rennard, P. McCoon, L. Pablo, S. Miklasz, L. Tarilonte, et al. (2006)
J. Immunol.
177, 4311-4321
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- CD25+CD4+ Regulatory T Cells and Memory T Cells Prevent Lymphopenia-Induced Proliferation of Naive T Cells in Transient States of Lymphopenia.
- C. Bourgeois and B. Stockinger (2006)
J. Immunol.
177, 4558-4566
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- Dendritic Cell Modulation by Mast Cells Controls the Th1/Th2 Balance in Responding T Cells.
- A. Mazzoni, R. P. Siraganian, C. A. Leifer, and D. M. Segal (2006)
J. Immunol.
177, 3577-3581
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- CD100 Enhances Dendritic Cell and CD4+ Cell Activation Leading to Pathogenetic Humoral Responses and Immune Complex Glomerulonephritis..
- M. Li, K. M. O'Sullivan, L. K. Jones, T. Semple, A. Kumanogoh, H. Kikutani, S. R. Holdsworth, and A. R. Kitching (2006)
J. Immunol.
177, 3406-3412
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- Dietary Fish Oil Inhibits Antigen-Specific Murine Th1 Cell Development by Suppression of Clonal Expansion.
- P. Zhang, W. Kim, L. Zhou, N. Wang, L. H. Ly, D. N. McMurray, and R. S. Chapkin (2006)
J. Nutr.
136, 2391-2398
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- Antigen-Experienced T Cells Limit the Priming of Naive T Cells during Infection with Leishmania major.
- P. M. Gray, S. L. Reiner, D. F. Smith, P. M. Kaye, and P. Scott (2006)
J. Immunol.
177, 925-933
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- The Yersinia enterocolitica Invasin Protein Promotes Major Histocompatibility Complex Class I- and Class II-Restricted T-Cell Responses.
- O. T. Buhler, C. A. Wiedig, Y. Schmid, G. A. Grassl, E. Bohn, and I. B. Autenrieth (2006)
Infect. Immun.
74, 4322-4329
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- G Protein-Coupled Receptor 83 Overexpression in Naive CD4+CD25- T Cells Leads to the Induction of Foxp3+ Regulatory T Cells In Vivo.
- W. Hansen, K. Loser, A. M. Westendorf, D. Bruder, S. Pfoertner, C. Siewert, J. Huehn, S. Beissert, and J. Buer (2006)
J. Immunol.
177, 209-215
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- p300/Cyclic AMP-Responsive Element Binding-Binding Protein Mediates Transcriptional Coactivation by the CD28 T Cell Costimulatory Receptor.
- S. L. Nandiwada, W. Li, R. Zhang, and D. L. Mueller (2006)
J. Immunol.
177, 401-413
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