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Science 17 December 1993: Vol. 262. no. 5141, pp. 1874 - 1877 DOI: 10.1126/science.8266076
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Articles
Science, Vol 262, Issue 5141, 1874-1877
Copyright © 1993 by American Association for the Advancement of Science
Sharing of the interleukin-2 (IL-2) receptor gamma chain between receptors for IL-2 and IL-4
M Kondo,
T Takeshita,
N Ishii,
M Nakamura,
S Watanabe,
K Arai,
and
K Sugamura
Department of Microbiology, Tohoku University School of Medicine, Sendai, Japan.
The gamma chain of the interleukin-2 (IL-2) receptor is an indispensable subunit for IL-2 binding and intracellular signal transduction. A monoclonal antibody to the gamma chain, TUGm2, inhibited IL-2 binding to the functional IL-2 receptors and also inhibited IL-4-induced cell growth and the high-affinity binding of IL-4 to the CTLL-2 mouse T cell line. Another monoclonal antibody, TUGm3, which reacted with the gamma chain cross-linked with IL-2, also immunoprecipitated the gamma chain when cross-linked with IL-4. These results suggest that the IL-2 receptor gamma chain is functionally involved in the IL-4 receptor complex.
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- Preassembly of interleukin 2 (IL-2) receptor subunits on resting Kit 225 K6 T cells and their modulation by IL-2, IL-7, and IL-15: A fluorescence resonance energy transfer study.
- S. Damjanovich, L. Bene, J. Matko, A. Alileche, C. K. Goldman, S. Sharrow, and T. A. Waldmann (1997)
PNAS
94, 13134-13139
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- Molecular Characterization and Functional Analysis of Murine Interleukin 4 Receptor Allotypes.
- T. Schulte, R. Kurrle, M. Rollinghoff, and A. Gessner (1997)
J. Exp. Med.
186, 1419-1429
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- Full Immunologic Reconstitution Following Nonconditioned Bone Marrow Transplantation for Canine X-Linked Severe Combined Immunodeficiency.
- P. J. Felsburg, R. L. Somberg, B. J. Hartnett, S. F. Suter, P. S. Henthorn, P. F. Moore, K. I. Weinberg, and H. D. Ochs (1997)
Blood
90, 3214-3221
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- Functional cleavage of the common cytokine receptor gamma chain (gamma c) by calpain.
- M. Noguchi, A. Sarin, M. J. Aman, H. Nakajima, E. W. Shores, P. A. Henkart, and W. J. Leonard (1997)
PNAS
94, 11534-11539
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- HMG-I(Y) Phosphorylation Status as a Nuclear Target Regulated through Insulin Receptor Substrate-1 and the I4R Motif of the Interleukin-4 Receptor.
- D. Wang, J. Zamorano, A. D. Keegan, and M. Boothby (1997)
J. Biol. Chem.
272, 25083-25090
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- An interleukin 4 (IL-4)-independent pathway for CD4+ T cell IL-4 production is revealed in IL-4 receptor-deficient mice.
- N. Noben-Trauth, L. D. Shultz, F. Brombacher, J. F. Urban Jr., H. Gu, and W. E. Paul (1997)
PNAS
94, 10838-10843
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- An Interleukin (IL)-13 Receptor Lacking the Cytoplasmic Domain Fails to Transduce IL-13-Induced Signals and Inhibits Responses to IL-4.
- P. L. Orchansky, S. D. Ayres, D. J. Hilton, and J. W. Schrader (1997)
J. Biol. Chem.
272, 22940-22947
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- Interleukin-15 Triggers Activation and Growth of the CD8 T-Cell Pool in Extravascular Tissues of Patients With Acquired Immunodeficiency Syndrome.
- C. Agostini, L. Trentin, R. Sancetta, M. Facco, C. Tassinari, A. Cerutti, M. Bortolin, A. Milani, M. Siviero, R. Zambello, et al. (1997)
Blood
90, 1115-1123
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- Coexpression of Kit and the Receptors for Erythropoietin, Interleukin 6 and GM-CSF on Hemopoietic Cells.
- M. O. de Jong, Y. Westerman, G. Wagemaker, and A. W. Wognum (1997)
Stem Cells
15, 275-285
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- Two Discrete Regions of Interleukin-2 (IL2) Receptor beta Independently Mediate IL2 Activation of a PD98059/Rapamycin/Wortmannin-insensitive Stat5a/b Serine Kinase.
- R. A. Kirken, M. G. Malabarba, J. Xu, L. DaSilva, R. A. Erwin, X. Liu, L. Hennighausen, H. Rui, and W. L. Farrar (1997)
J. Biol. Chem.
272, 15459-15465
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- Clonal Proliferation and Cytokine Requirement of Murine Progenitors for Natural Killer Cells.
- Y. Aiba, F. Hirayama, and M. Ogawa (1997)
Blood
89, 4005-4012
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- Homodimerization of the human interleukin 4 receptor alpha chain induces Cvarepsilon germline transcripts in B cells in the absence of the interleukin 2 receptor gamma chain.
- H. Fujiwara, S. H. Hanissian, A. Tsytsykova, and R. S. Geha (1997)
PNAS
94, 5866-5871
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- Activation of Phosphatidylinositol 3-Kinase by Interleukin-13. AN INHIBITORY SIGNAL FOR INDUCIBLE NITRIC-OXIDE SYNTHASE EXPRESSION IN EPITHELIAL CELL LINE HT-29.
- K. Wright, S. G. Ward, G. Kolios, and J. Westwick (1997)
J. Biol. Chem.
272, 12626-12633
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- Interleukin-4 (IL-4) Induces Phosphatidylinositol 3-Kinase (p85) Dephosphorylation. IMPLICATIONS FOR THE ROLE OF SHP-1 IN THE IL-4-INDUCED SIGNALS IN HUMAN B CELLS.
- F. Imani, K. J. Rager, B. Catipovic, and D. G. Marsh (1997)
J. Biol. Chem.
272, 7927-7931
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- Interleukin-4 Signaling in B Lymphocytes from Patients with X-linked Severe Combined Immunodeficiency.
- N. Taylor, F. Candotti, S. Smith, S. A. Oakes, T. Jahn, J. Isakov, J. M. Puck, J. J. O'Shea, K. Weinberg, and J. A. Johnston (1997)
J. Biol. Chem.
272, 7314-7319
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- Jak1 Expression Is Required for Mediating Interleukin-4-induced Tyrosine Phosphorylation of Insulin Receptor Substrate and Stat6 Signaling Molecules.
- X. H. Chen, B. K.R. Patel, L.-M. Wang, M. Frankel, N. Ellmore, R. A. Flavell, W. J. LaRochelle, and J. H. Pierce (1997)
J. Biol. Chem.
272, 6556-6560
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- A mixed-charge pair in human interleukin 4 dominates high-affinity interaction with the receptor alpha chain.
- Y. Wang, B.-J. Shen, and W. Sebald (1997)
PNAS
94, 1657-1662
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- Requirement for an initial signal from the membrane-proximal region of the interleukin 2 receptor gamma c chain for Janus kinase activation leading to T cell proliferation.
- B. H. Nelson, B. C. McIntosh, L. L. Rosencrans, and P. D. Greenberg (1997)
PNAS
94, 1878-1883
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- Tumor Necrosis Factor alpha Enhances the Expression of the Interleukin (IL)-4 Receptor alpha -Chain on Endothelial Cells Increasing IL-4 or IL-13-induced Stat6 Activation.
- S. M. Lugli, N. Feng, M. H. Heim, M. Adam, B. Schnyder, H. Etter, M. Yamage, H.-P. Eugster, R. A. Lutz, G. Zurawski, et al. (1997)
J. Biol. Chem.
272, 5487-5494
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- Peripheral Expression of Jak3 Is Required to Maintain T Lymphocyte Function.
- D. C. Thomis and L. J. Berg (1997)
J. Exp. Med.
185, 197-206
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- Crucial Role of Jak3 in Negative Selection of Self-reactive T Cells.
- K. Saijo, S. Y. Park, Y. Ishida, H. Arase, and T. Saito (1997)
J. Exp. Med.
185, 351-356
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- A Murine Interleukin-4 Antagonistic Mutant Protein Completely Inhibits Interleukin-4-induced Cell Proliferation, Differentiation, and Signal Transduction.
- S. M. Grunewald, S. Kunzmann, B. Schnarr, J. Ezernieks, W. Sebald, and A. Duschl (1997)
J. Biol. Chem.
272, 1480-1483
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- Activating Mutations in Cytokine Receptors: Implications for Receptor Function and Role in Disease.
- T. J. Gonda and R. J. D'Andrea (1997)
Blood
89, 355-369
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