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The Journal of Immunology, Vol 141, Issue 11 3810-3818, Copyright © 1988 by American Association of Immunologists


ARTICLES

Immature, double negative (CD4-,CD8-) rat thymocytes do not express IL- 2 receptors

L Takacs, FW Ruscetti, EJ Kovacs, B Rocha, S Brocke, T Diamantstein and BJ Mathieson
Laboratory of Molecular Immunoregulation, National Cancer Institute, Frederick, MD 21701-1013.

IL-2R alpha-chain is expressed on a subset of mouse CD4- and CD8-, double negative (DN) thymocytes. This expression of IL-2R alpha-chain on some DN thymocytes in the mouse has led to the proposal that IL-2 might serve as a principal growth and/or differentiation factor for immature thymocytes. However, previous histologic observations have indicated that IL-2R alpha-chain is not expressed on the subcapsular thymic blasts (an area rich in DN cells) in either huma or rat thymus, whereas all three species display IL-2R expression on a few cells in the thymic medulla. Therefore, we characterized rat DN thymocytes to determine whether they contained an IL-2R+ population. The results show that rat thymic DN cells share several characteristics with mouse DN cells. However, most of the rat strains do not express the IL-2R on DN cells as shown either by immunofluorescence or by IL-2 binding and receptor cross-linking. Thus, the rare medullary IL-2R+ cells were not found in the DN cells. Only in the exceptional F344 rat strain is the IL-2R alpha-chain expressed on a major proportion of thymocytes, including both DN cells and small cortical-type thymocytes. Furthermore, rat DN cells do not contain detectable IL-2 mRNA or cytoplasmic IL-2 activity, thus supporting the conclusion that it is unlikely that IL-2 and IL-2R serve to maintain the proliferation of rat DN thymocytes in vivo. The possible significance of in vivo expression of IL-2R alpha-chain on immature thymocytes in the mouse and in a single rat strain is discussed.


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Z Prakapas, M Denoyelle, C Dargemont, F. Kroese, J. Thiery, and M. Deugnier
Enrichment and characterization of thymus-repopulating cells in stroma-dependent cultures of rat bone marrow
J. Cell Sci., January 4, 1993; 104(4): 1039 - 1048.
[Abstract] [PDF]




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