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Science 13 May 1994: Vol. 264. no. 5161, pp. 965 - 968 DOI: 10.1126/science.8178155
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Articles
Science, Vol 264, Issue 5161, 965-968
Copyright © 1994 by American Association for the Advancement of Science
Cloning of a T cell growth factor that interacts with the beta chain of the interleukin-2 receptor
KH Grabstein,
J Eisenman,
K Shanebeck,
C Rauch,
S Srinivasan,
V Fung,
C Beers,
J Richardson,
MA Schoenborn,
M Ahdieh,
and
al. et
Immunex Research and Development Corporation, Seattle, WA 98101.
A cytokine was identified that stimulated the proliferation of T lymphocytes, and a complementary DNA clone encoding this new T cell growth factor was isolated. The cytokine, designated interleukin-15 (IL-15), is produced by a wide variety of cells and tissues and shares many biological properties with IL-2. Monoclonal antibodies to the beta chain of the IL-2 receptor inhibited the biological activity of IL-15, and IL-15 competed for binding with IL-2, indicating that IL-15 uses components of the IL-2 receptor.
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- Interleukin-15 Administration Improves Diaphragm Muscle Pathology and Function in Dystrophic mdx Mice.
- L. J. Harcourt, A. G. Holmes, P. Gregorevic, J. D. Schertzer, N. Stupka, D. R. Plant, and G. S. Lynch (2005)
Am. J. Pathol.
166, 1131-1141
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- A Novel Role of IL-15 in Early Activation of Memory CD8+ CTL after Reinfection.
- T. Yajima, H. Nishimura, S. Sad, H. Shen, H. Kuwano, and Y. Yoshikai (2005)
J. Immunol.
174, 3590-3597
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- Interleukin-15 enhances immune reconstitution after allogeneic bone marrow transplantation.
- O. Alpdogan, J. M. Eng, S. J. Muriglan, L. M. Willis, V. M. Hubbard, K. H. Tjoe, T. H. Terwey, A. Kochman, and M. R. M. van den Brink (2005)
Blood
105, 865-873
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- Donor-derived IL-15 is critical for acute allogeneic graft-versus-host disease.
- B. W. Blaser, S. Roychowdhury, D. J. Kim, N. R. Schwind, D. Bhatt, W. Yuan, D. F. Kusewitt, A. K. Ferketich, M. A. Caligiuri, and M. Guimond (2005)
Blood
105, 894-901
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- A novel autoregulatory mechanism for transcriptional activation of the IL-15 gene by a nonsecretable isoform of IL-15 generated by alternative splicing.
- H. Nishimura, A. Fujimoto, N. Tamura, T. Yajima, W. Wajjwalku, and Y. Yoshikai (2005)
FASEB J
19, 19-28
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- Enhancement of the host immune responses in cutaneous T-cell lymphoma by CpG oligodeoxynucleotides and IL-15.
- M. Wysocka, B. M. Benoit, S. Newton, L. Azzoni, L. J. Montaner, and A. H. Rook (2004)
Blood
104, 4142-4149
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- Association of interleukin-15 protein and interleukin-15 receptor genetic variation with resistance exercise training responses.
- S. E. Riechman, G. Balasekaran, S. M. Roth, and R. E. Ferrell (2004)
J Appl Physiol
97, 2214-2219
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- Follicular Dendritic Cells Produce IL-15 That Enhances Germinal Center B Cell Proliferation in Membrane-Bound Form.
- C.-S. Park, S.-O. Yoon, R. J. Armitage, and Y. S. Choi (2004)
J. Immunol.
173, 6676-6683
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- Discovery of BRL 50481 [3-(N,N-dimethylsulfonamido)-4-methyl-nitrobenzene], a Selective Inhibitor of Phosphodiesterase 7: In Vitro Studies in Human Monocytes, Lung Macrophages, and CD8+ T-Lymphocytes.
- S. J. Smith, L. B. Cieslinski, R. Newton, L. E. Donnelly, P. S. Fenwick, A. G. Nicholson, P. J. Barnes, M. S. Barnette, and M. A. Giembycz (2004)
Mol. Pharmacol.
66, 1679-1689
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- Evidence of a Novel IL-2/15R{beta}-Targeted Cytokine Involved in Homeostatic Proliferation of Memory CD8+ T Cells.
- D. Kamimura, N. Ueda, Y. Sawa, S. Hachida, T. Atsumi, T. Nakagawa, S.-i. Sawa, G.-H. Jin, H. Suzuki, K. Ishihara, et al. (2004)
J. Immunol.
173, 6041-6049
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- Failed Adoptive Immunotherapy with Tumor-Specific T Cells: Reversal with Low-Dose Interleukin 15 but not Low-Dose Interleukin 2.
- S. Roychowdhury, K. F. May Jr., K. S. Tzou, T. Lin, D. Bhatt, A. G. Freud, M. Guimond, A. K. Ferketich, Y. Liu, and M. A. Caligiuri (2004)
Cancer Res.
64, 8062-8067
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- Targeting IL-15 Receptor-Bearing Cells with an Antagonist Mutant IL-15/Fc Protein Prevents Disease Development and Progression in Murine Collagen-Induced Arthritis.
- S. Ferrari-Lacraz, E. Zanelli, M. Neuberg, E. Donskoy, Y. S. Kim, X. X. Zheng, W. W. Hancock, W. Maslinski, X. C. Li, T. B. Strom, et al. (2004)
J. Immunol.
173, 5818-5826
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- Cutting Edge: Murine Dendritic Cells Require IL-15R{alpha} to Prime NK Cells.
- R. Koka, P. Burkett, M. Chien, S. Chai, D. L. Boone, and A. Ma (2004)
J. Immunol.
173, 3594-3598
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- Interleukin-15 Enhances Cytotoxicity, Receptor Expression, and Expansion of Neonatal Natural Killer Cells in Long-Term Culture.
- S. S. Choi, V. S. Chhabra, Q. H. Nguyen, B. J. Ank, E. R. Stiehm, and R. L. Roberts (2004)
Clin. Vaccine Immunol.
11, 879-888
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- Natural, Proteolytic Release of a Soluble Form of Human IL-15 Receptor {alpha}-Chain That Behaves as a Specific, High Affinity IL-15 Antagonist.
- E. Mortier, J. Bernard, A. Plet, and Y. Jacques (2004)
J. Immunol.
173, 1681-1688
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- IL-15 and the Initiation of Cell Contact-Dependent Synovial Fibroblast-T Lymphocyte Cross-Talk in Rheumatoid Arthritis: Effect of Methotrexate.
- M.-E. Miranda-Carus, A. Balsa, M. Benito-Miguel, C. Perez de Ayala, and E. Martin-Mola (2004)
J. Immunol.
173, 1463-1476
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- Identification of an Interleukin-15{alpha} Receptor-binding Site on Human Interleukin-15.
- J. Bernard, C. Harb, E. Mortier, A. Quemener, R. H. Meloen, C. Vermot-Desroches, J. Wijdeness, P. van Dijken, J. Grotzinger, J. W. Slootstra, et al. (2004)
J. Biol. Chem.
279, 24313-24322
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- CD56+ Cells Induce Steroid Resistance in B Cells Exposed to IL-15.
- Q. Xu, E. Goleva, L.-S. Ou, L.-B. Li, and D. Y. M. Leung (2004)
J. Immunol.
172, 7110-7115
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- The Size and Phenotype of Virus-Specific T Cell Populations Is Determined by Repetitive Antigenic Stimulation and Environmental Cytokines.
- L. E. Gamadia, E. M. M. van Leeuwen, E. B. M. Remmerswaal, S.-L. Yong, S. Surachno, P. M. E. Wertheim-van Dillen, I. J. M. ten Berge, and R. A. W. van Lier (2004)
J. Immunol.
172, 6107-6114
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- Th2 cells are less susceptible than Th1 cells to the suppressive activity of CD25+ regulatory thymocytes because of their responsiveness to different cytokines.
- L. Cosmi, F. Liotta, R. Angeli, B. Mazzinghi, V. Santarlasci, R. Manetti, L. Lasagni, V. Vanini, P. Romagnani, E. Maggi, et al. (2004)
Blood
103, 3117-3121
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- Distinct cell types control lymphoid subset development by means of IL-15 and IL-15 receptor {alpha} expression.
- K. S. Schluns, E. C. Nowak, A. Cabrera-Hernandez, L. Puddington, L. Lefrancois, and H. L. Aguila (2004)
PNAS
101, 5616-5621
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- IL-15 enhances the in vivo antitumor activity of tumor-reactive CD8+ T Cells.
- C. A. Klebanoff, S. E. Finkelstein, D. R. Surman, M. K. Lichtman, L. Gattinoni, M. R. Theoret, N. Grewal, P. J. Spiess, P. A. Antony, D. C. Palmer, et al. (2004)
PNAS
101, 1969-1974
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- Transregulation of memory CD8 T-cell proliferation by IL-15R{alpha}+ bone marrow-derived cells.
- K. S. Schluns, K. D. Klonowski, and L. Lefrancois (2004)
Blood
103, 988-994
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- IL-15 and Cognate Antigen Successfully Expand De Novo-Induced Human Antigen-Specific Regulatory CD4+ T Cells That Require Antigen-Specific Activation for Suppression.
- H. J. P. M. Koenen, E. Fasse, and I. Joosten (2003)
J. Immunol.
171, 6431-6441
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- Interleukin-21 inhibits dendritic cell activation and maturation.
- K. Brandt, S. Bulfone-Paus, D. C. Foster, and R. Ruckert (2003)
Blood
102, 4090-4098
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- New strategies to control inflammatory synovitis: interleukin 15 and beyond.
- I B McInnes, J A Gracie, M Harnett, W Harnett, and F Y Liew (2003)
Ann Rheum Dis
62, ii51-54
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- IL-15 induces antigen-independent expansion and differentiation of human naive CD8+ T cells in vitro.
- N. L. Alves, B. Hooibrink, F. A. Arosa, and R. A. W. van Lier (2003)
Blood
102, 2541-2546
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