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Science 7 July 1995: Vol. 269. no. 5220, pp. 79 - 81 DOI: 10.1126/science.7604283
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Articles
Science, Vol 269, Issue 5220, 79-81
Copyright © 1995 by American Association for the Advancement of Science
Constitutively activated Jak-STAT pathway in T cells transformed with HTLV-I
TS Migone,
JX Lin,
A Cereseto,
JC Mulloy,
JJ O'Shea,
G Franchini,
and
WJ Leonard
Laboratory of Molecular Immunology, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Human T cell lymphotropic virus I (HTLV-I) is the etiological agent for adult T cell leukemia and tropical spastic paraparesis (also termed HTLV-I-associated myelopathy). HTLV-I-infected peripheral blood T cells exhibit an initial phase of interleukin-2 (IL-2)-dependent growth; over time, by an unknown mechanism, the cells become IL-2-independent. Whereas the Jak kinases Jak1 and Jak3 and the signal transducer and activator of transcription proteins Stat3 and Stat5 are activated in normal T cells in response to IL-2, this signaling pathway was constitutively activated in HTLV-I-transformed cells. In HTLV-I-infected cord blood lymphocytes, the transition from IL-2-dependent to IL-2-independent growth correlated with the acquisition of a constitutively activated Jak-STAT pathway, which suggests that this pathway participates in HTLV-I-mediated T cell transformation.
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J. Immunol.
161, 1074-1077
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- A Novel Function of Stat1alpha and Stat3 Proteins in Erythropoietin-Induced Erythroid Differentiation of a Human Leukemia Cell Line.
- K. Kirito, M. Uchida, M. Takatoku, K. Nakajima, T. Hirano, Y. Miura, and N. Komatsu (1998)
Blood
92, 462-471
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- Identification and Characterization of a Constitutively Active STAT5 Mutant That Promotes Cell Proliferation.
- M. Onishi, T. Nosaka, K. Misawa, A. L.-F. Mui, D. Gorman, M. McMahon, A. Miyajima, and T. Kitamura (1998)
Mol. Cell. Biol.
18, 3871-3879
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- Selective Ablation of Human T-Cell Lymphotropic Virus Type 1 p12I Reduces Viral Infectivity In Vivo.
- N. D. Collins, G. C. Newbound, B. Albrecht, J. L. Beard, L. Ratner, and M. D. Lairmore (1998)
Blood
91, 4701-4707
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- Human and Simian T-Cell Leukemia Viruses Type 2 (HTLV-2 and STLV-2pan-p) Transform T Cells Independently of Jak/STAT Activation.
- J. C. Mulloy, T.-S. Migone, T. M. Ross, N. Ton, P. L. Green, W. J. Leonard, and G. Franchini (1998)
J. Virol.
72, 4408-4412
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- Human T-Cell Leukemia Virus Type 1 pX-I and pX-II Open Reading Frames Are Dispensable for the Immortalization of Primary Lymphocytes.
- M. D. Robek, F.-H. Wong, and L. Ratner (1998)
J. Virol.
72, 4458-4462
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- Stat3 Activation by Src Induces Specific Gene Regulation and Is Required for Cell Transformation.
- J. Turkson, T. Bowman, R. Garcia, E. Caldenhoven, R. P. De Groot, and R. Jove (1998)
Mol. Cell. Biol.
18, 2545-2552
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- Stat3 Activation Is Required for Cellular Transformation by v-src.
- J. F. Bromberg, C. M. Horvath, D. Besser, W. W. Lathem, and J. E. Darnell Jr. (1998)
Mol. Cell. Biol.
18, 2553-2558
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- Stat Proteins Control Lymphocyte Proliferation by Regulating p27Kip1 Expression.
- M. H. Kaplan, C. Daniel, U. Schindler, and M. J. Grusby (1998)
Mol. Cell. Biol.
18, 1996-2003
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- Characterization of BCE-1, a Transcriptional Enhancer Regulated by Prolactin and Extracellular Matrix and Modulated by the State of Histone Acetylation.
- C. A. Myers, C. Schmidhauser, J. Mellentin-Michelotti, G. Fragoso, C. D. Roskelley, G. Casperson, R. Mossi, P. Pujuguet, G. Hager, and M. J. Bissell (1998)
Mol. Cell. Biol.
18, 2184-2195
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- Infective Dermatitis: A Pabulum for Human T-Lymphotrophic Virus Type I Leukemogenesis?.
- E. Tschachler and G. Franchini (1998)
Arch Dermatol
134, 487-488
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- Regulation of Cell Growth by IL-2: Role of STAT5 in Protection from Apoptosis But Not in Cell Cycle Progression.
- J. Zamorano, H. Y. Wang, R. Wang, Y. Shi, G. D. Longmore, and A. D. Keegan (1998)
J. Immunol.
160, 3502-3512
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- Recruitment of SH2-containing protein tyrosine phosphatase SHP-1 to the interleukin 2 receptor; loss of SHP-1 expression in human T-lymphotropic virus type I-transformed T cells.
- T.-S. Migone, N. A. Cacalano, N. Taylor, T. Yi, T. A. Waldmann, and J. A. Johnston (1998)
PNAS
95, 3845-3850
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- A Human T-cell Leukemia Virus Tax Variant Incapable of Activating NF-kappa B Retains Its Immortalizing Potential for Primary T-lymphocytes.
- O. Rosin, C. Koch, I. Schmitt, O. J. Semmes, K.-T. Jeang, and R. Grassmann (1998)
J. Biol. Chem.
273, 6698-6703
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- Induction of Jak/STAT Signaling by Activation of the Type 1 TNF Receptor.
- D. Guo, J. D. Dunbar, C. H. Yang, L. M. Pfeffer, and D. B. Donner (1998)
J. Immunol.
160, 2742-2750
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- Human T cell lymphotropic virus type I Tax protein trans-activates interleukin 15 gene transcription through an NF-kappa B site.
- N. Azimi, K. Brown, R. N. Bamford, Y. Tagaya, U. Siebenlist, and T. A. Waldmann (1998)
PNAS
95, 2452-2457
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- Erythropoietin and Friend Virus gp55 Activate Different JAK/STAT Pathways through the Erythropoietin Receptor in Erythroid Cells.
- Y. Yamamura, H. Senda, Y. Kageyama, T. Matsuzaki, M. Noda, and Y. Ikawa (1998)
Mol. Cell. Biol.
18, 1172-1180
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- Cutting Edge: Constitutive Activation of TCR Signaling Molecules in IL-2-Independent Herpesvirus saimiri-Transformed T Cells.
- N. Noraz, K. Saha, F. Ottones, S. Smith, and N. Taylor (1998)
J. Immunol.
160, 2042-2045
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- Genes in the pX region of human T cell leukemia virus I influence Vav phosphorylation in T cells.
- W. Mahana, T. M. Zhao, R. Teller, M. A. Robinson, and T. J. Kindt (1998)
PNAS
95, 1782-1787
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- Cloning and Characterization of the Human Homolog of Mouse Jak2.
- I. Dalal, E. Arpaia, H. Dadi, S. Kulkarni, J. Squire, and C. M. Roifman (1998)
Blood
91, 844-851
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- Nitric oxide and thiol redox regulation of Janus kinase activity.
- R. J. Duhe, G. A. Evans, R. A. Erwin, R. A. Kirken, G. W. Cox, and W. L. Farrar (1998)
PNAS
95, 126-131
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- Stimulation of Cyclin-Dependent Kinase Activity and G1- to S-Phase Transition in Human Lymphocytes by the Human T-Cell Leukemia/Lymphotropic Virus Type 1 Tax Protein.
- I. Schmitt, O. Rosin, P. Rohwer, M. Gossen, and R. Grassmann (1998)
J. Virol.
72, 633-640
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- The Association of Atopy with a Gain-of-Function Mutation in the {alpha} Subunit of the Interleukin-4 Receptor.
- G. K. K. Hershey, M. F. Friedrich, L. A. Esswein, M. L. Thomas, and T. A. Chatila (1997)
N. Engl. J. Med.
337, 1720-1725
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