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K. Takeda, Koichi Noguchi, W. Shi, Takashi Tanaka, M. Matsumoto, N. Yoshida, T. Kishimoto, S. Akira (1997)
Targeted disruption of the mouse Stat3 gene leads to early embryonic lethality.Proceedings of the National Academy of Sciences of the United States of America, 94 8
Xi-liang Cao, E. Shores, J. Hu‐Li, M. Anver, Brian Kelsail, S. Russell, J. Drago, M. Noguchi, A. Grinberg, E. Bloom, W. Paul, S. Katz, P. Love, W. Leonard (1995)
Defective lymphoid development in mice lacking expression of the common cytokine receptor gamma chain.Immunity, 2 3
M. Kawamura, D. McVicar, James JOHNSTONt, B. Trevor, Blakeo, Ying Chenx, B. Lal, Andrew LLOYDt, David KELVINt, J. STAPLESt, J. Ortaldo, J. O’Shea (1994)
Molecular cloning of L-JAK, a Janus family protein-tyrosine kinase expressed in natural killer cells and activated leukocytes.Proceedings of the National Academy of Sciences of the United States of America, 91 14
David Hilbert, Thi-Sau Migone, Manfred Kopf, Warren Leonard, Stuart Rudikoff (1996)
Distinct tumorigenic potential of abl and raf in B cell neoplasia: abl activates the IL-6 signaling pathway.Immunity, 5 1
A. Vos, M. Ultsch, A. Kossiakoff (1992)
Human growth hormone and extracellular domain of its receptor: crystal structure of the complex.Science, 255 5042
N. Meydan, T. Grunberger, H. Dadi, M. Shahar, E. Arpaia, Z. Lapidot, J. Leeder, M. Freedman, A. Cohen, A. Gazit, A. Levitzki, C. Roifman (1996)
Inhibition of acute lymphoblastic leukaemia by a Jak-2 inhibitorNature, 379
Warren M.D (1996)
The molecular basis of X-linked severe combined immunodeficiency: defective cytokine receptor signaling.Annual review of medicine, 47
Jacqueline Damen, Hiroshi Wakao, Atsushi, Miyajima, Jana Krosl, R. Humphries, Robert Cutler, Gerald, Krystal (1995)
Tyrosine 343 in the erythropoietin receptor positively regulates erythropoietin‐induced cell proliferation and Stat5 activation.The EMBO Journal, 14
D. Look, M. Pelletier, Rose Tidwell, W. Roswit, M. Holtzman (1995)
Stat1 Depends on Transcriptional Synergy with Sp1 (*)The Journal of Biological Chemistry, 270
S. Oakes, F. Candotti, J. Johnston, Yi-Qing Chen, J. Ryan, Naomi Taylor, Xiuwen Liu, L. Hennighausen, L. Notarangelo, W. Paul, R. Blaese, J. O’Shea (1996)
Signaling via IL-2 and IL-4 in JAK3-deficient severe combined immunodeficiency lymphocytes: JAK3-dependent and independent pathways.Immunity, 5 6
T. Yin, R. Shen, G. Feng, Yu‐Chung Yang (1997)
Molecular Characterization of Specific Interactions between SHP-2 Phosphatase and JAK Tyrosine Kinases*The Journal of Biological Chemistry, 272
X. Hou, M. Melnick, N. Perrimon (1996)
marelle Acts Downstream of the Drosophila HOP/JAK Kinase and Encodes a Protein Similar to the Mammalian STATsCell, 84
C. Horvath, J. Darnell (1996)
The antiviral state induced by alpha interferon and gamma interferon requires transcriptionally active Stat1 proteinJournal of Virology, 70
J. Verbsky, E. Bach, Yifu Fang, Liping Yang, D. Randolph, L. Fields (1996)
Expression of Janus Kinase 3 in Human Endothelial and Other Non-lymphoid and Non-myeloid Cells*The Journal of Biological Chemistry, 271
M. Kaplan, U. Schindler, S. Smiley, M. Grusby (1996)
Stat6 is required for mediating responses to IL-4 and for development of Th2 cells.Immunity, 4 3
Xin Fu, C. Schindler, Teresa Improta, Ruedi Aebersold, James Darnell (1992)
The proteins of ISGF-3, the interferon alpha-induced transcriptional activator, define a gene family involved in signal transduction.Proceedings of the National Academy of Sciences of the United States of America, 89
S. Rane, E. Reddy (1994)
JAK3: a novel JAK kinase associated with terminal differentiation of hematopoietic cells.Oncogene, 9 8
T. Yin, G. Sandhu, C. Wolfgang, A. Burrier, R. Webb, D. Rigel, Tsonwin Hai, J. Whelan (1997)
Tissue-specific Pattern of Stress Kinase Activation in Ischemic/Reperfused Heart and Kidney*The Journal of Biological Chemistry, 272
A. Kumar, A. Toscani, S. Rane, E. Reddy (1996)
Structural organization and chromosomal mapping of JAK3 locus.Oncogene, 13 9
Lawrence Pfeffer, Jerald Mullersman, Susan Pfeffer, A. Murti, Wei Shi, Chuanhe Yang (1997)
STAT3 as an adapter to couple phosphatidylinositol 3-kinase to the IFNAR1 chain of the type I interferon receptor.Science, 276 5317
Z. Zhong, Zilong Wen, J. Darnell (1994)
Stat3: a STAT family member activated by tyrosine phosphorylation in response to epidermal growth factor and interleukin-6.Science, 264 5155
Jian Feng, B. Witthuhn, T. Matsuda, F. Kohlhuber, I. Kerr, J. Ihle (1997)
Activation of Jak2 catalytic activity requires phosphorylation of Y1007 in the kinase activation loopMolecular and Cellular Biology, 17
Z. Zhong, Zilong Wen, J. Darnell (1994)
Stat3 and Stat4: members of the family of signal transducers and activators of transcription.Proceedings of the National Academy of Sciences of the United States of America, 91 11
Xiuwen Liu, G. Robinson, Fabrice Gouilleux, Bernd Groner, Lothar Hennighausen (1995)
Cloning and expression of Stat5 and an additional homologue (Stat5b) involved in prolactin signal transduction in mouse mammary tissue.Proceedings of the National Academy of Sciences of the United States of America, 92 19
J. Disanto, Werner Müller, D. Guy‐grand, A. Fischer, K. Rajewsky (1995)
Lymphoid development in mice with a targeted deletion of the interleukin 2 receptor gamma chain.Proceedings of the National Academy of Sciences of the United States of America, 92
Alice Mui, H. Wakao, A. O'Farrell, N. Harada, Atsushi Miyajima (1995)
Interleukin‐3, granulocyte‐macrophage colony stimulating factor and interleukin‐5 transduce signals through two STAT5 homologs.The EMBO Journal, 14
M. Heim, E. Wissler, F. Stöcklin, B. Gouilleux, R. Groner, S. Moriggl, K. Berchtold, G. Friedrich, W. Standke, Kammer (1997)
Epithelial Cells. Mammary Stat5 and Stat6 in Lymphoid Cells and Comparison of the Transactivation Domains Of
Xiuwen Liu, G. Robinson, K. Wagner, L. Garrett, A. Wynshaw-Boris, L. Hennighausen (1997)
Stat5a is mandatory for adult mammary gland development and lactogenesis.Genes & development, 11 2
T. Naka, M. Narazaki, M. Hirata, Tomoshige Matsumoto, S. Minamoto, A. Aono, N. Nishimoto, T. Kajita, T. Taga, K. Yoshizaki, S. Akira, T. Kishimoto (1997)
Structure and function of a new STAT-induced STAT inhibitorNature, 387
John Krolewski, R. Lee, R. Eddy, Shows Tb, R. Dalla-Favera (1990)
Identification and chromosomal mapping of new human tyrosine kinase genes.Oncogene, 5 3
Takashi Ohashi, Michiaki Masuda, S. Ruscetti (1995)
Induction of sequence-specific DNA-binding factors by erythropoietin and the spleen focus-forming virus.Blood, 85 6
Tadaaki Miyazaki, A. Kawahara, Hodaka Fujii, Yoko Nakagawa, Yasuhiro Minami, Zhao Liu, Isao Oishi, O. Silvennoinen, B. Witthuhn, J. Ihle, Tadatsugu Taniguchi (1994)
Functional activation of Jak1 and Jak3 by selective association with IL-2 receptor subunits.Science, 266 5187
Demin Wang, D. Stravopodis, Stephen Teglund, J. Kitazawa, J. Ihle (1996)
Naturally occurring dominant negative variants of Stat5Molecular and Cellular Biology, 16
A. Mui, H. Wakao, T. Kinoshita, T. Kitamura, A. Miyajima (1996)
Suppression of interleukin‐3‐induced gene expression by a C‐terminal truncated Stat5: role of Stat5 in proliferation.The EMBO Journal, 15
J. Bergeron, P. Frank, Damon Scales, Q. Meng, Graciela Castro, Y. Marcel (1995)
Apolipoprotein A-I Conformation in Reconstituted Discoidal Lipoproteins Varying in Phospholipid and Cholesterol Content (*)The Journal of Biological Chemistry, 270
J. Darnell, I. Kerr, George Stark (1994)
Jak-STAT pathways and transcriptional activation in response to IFNs and other extracellular signaling proteins.Science, 264 5164
C. Beadling, Julian Ng, J. Babbage, D. Cantrell (1996)
Interleukin‐2 activation of STAT5 requires the convergent action of tyrosine kinases and a serine/threonine kinase pathway distinct from the Raf1/ERK2 MAP kinase pathway.The EMBO Journal, 15
T. Endo, M. Masuhara, M. Yokouchi, R. Suzuki, H. Sakamoto, K. Mitsui, A. Matsumoto, Shyu Tanimura, M. Ohtsubo, H. Misawa, T. Miyazaki, N. Leonor, T. Taniguchi, T. Fujita, Y. Kanakura, S. Komiya, A. Yoshimura (1997)
A new protein containing an SH2 domain that inhibits JAK kinasesNature, 387
A. Wilks, A. Harpur, Raja Kurban, S. Ralph, G. Zürcher, A. Ziemiecki (1991)
Two novel protein-tyrosine kinases, each with a second phosphotransferase-related catalytic domain, define a new class of protein kinaseMolecular and Cellular Biology, 11
Hong Luo, Paul Rose, Dwayne Barber, W. Hanratty, Sue Lee, Thomas Roberts, Alan D’Andrea, C. Dearolf (1997)
Mutation in the Jak kinase JH2 domain hyperactivates Drosophila and mammalian Jak-Stat pathwaysMolecular and Cellular Biology, 17
H. Luo, W. Hanratty, C. Dearolf (1995)
An amino acid substitution in the Drosophila hopTum‐l Jak kinase causes leukemia‐like hematopoietic defects.The EMBO Journal, 14
N. Sharfe, H. Dadi, J. O'Shea, C. Roifman (1997)
Jak3 activation in human lymphocyte precursor cellsClinical & Experimental Immunology, 108
M. Meraz, J. White, K. Sheehan, E. Bach, S. Rodig, A. Dighe, D. Kaplan, J. Riley, A. Greenlund, Dayle Campbell, K. Carver-Moore, R. Dubois, R. Clark, M. Aguet, R. Schreiber (1996)
Targeted Disruption of the Stat1 Gene in Mice Reveals Unexpected Physiologic Specificity in the JAK–STAT Signaling PathwayCell, 84
K. Shimoda, Jan Deursent, M. Sangster, S. Sarawar, R. Carson, R. Tripp, C. Chu, F. Quelle, T. Nosaka, D. Vignali, P. Doherty, G. Grosveld, W. Paul, J. Ihle (1996)
Lack of IL-4-induced Th2 response and IgE class switching in mice with disrupted State6 geneNature, 380
S. Akira, Y. Nishio, M. Inoue, Xue-jie Wang, Shi We, T. Matsusaka, Kanji Yoshida, T. Sudo, M. Naruto, T. Kishimoto (1994)
Molecular cloning of APRF, a novel IFN-stimulated gene factor 3 p91-related transcription factor involved in the gp130-mediated signaling pathwayCell, 77
Y. Nakamura, S. Russell, S. Mess, M. Friedmann, M. Erdos, C. François, Y. Jacques, S. Adelstein, W. Leonard (1994)
Heterodimerization of the IL-2 receptor β- and γ-chain cytoplasmic domains is required for signallingNature, 369
J. O’Shea (1997)
Jaks, STATs, cytokine signal transduction, and immunoregulation: are we there yet?Immunity, 7 1
Y. Fujitani, M. Hibi, T. Fukada, M. Takahashi-Tezuka, H. Yoshida, Takuya Yamaguchi, K. Sugiyama, Y. Yamanaka, K. Nakajima, T. Hirano (1997)
An alternative pathway for STAT activation that is mediated by the direct interaction between JAK and STATOncogene, 14
M. Aman, W. Leonard (1997)
Cytokine signaling: Cytokine-inducible signaling inhibitorsCurrent Biology, 7
Hou Xs, Norbert Perrimon (1997)
The JAK-STAT pathway in Drosophila.Trends in genetics : TIG, 13 3
C. Abramovich, L. Shulman, E. Ratovitski, S. Harroch, M. Tovey, P. Eid, M. Revel (1994)
Differential tyrosine phosphorylation of the IFNAR chain of the type I interferon receptor and of an associated surface protein in response to IFN‐alpha and IFN‐beta.The EMBO Journal, 13
Franz Kohlhuber, N. Rogers, D. Watling, Jian Feng, Dmitry Guschin, James Briscoe, B. Witthuhn, S. Kotenko, Sidney Pestka, George Stark, J. Ihle, Ian Kerr (1997)
A JAK1/JAK2 chimera can sustain alpha and gamma interferon responsesMolecular and Cellular Biology, 17
Xiaoxia Li, S. Leung, Ian Kerr, George Stark (1997)
Functional subdomains of STAT2 required for preassociation with the alpha interferon receptor and for signalingMolecular and Cellular Biology, 17
Curt Horvath, James Darnell (1997)
The state of the STATs: recent developments in the study of signal transduction to the nucleus.Current opinion in cell biology, 9 2
F. Quelle, Demin Wang, T. Nosaka, W. Thierfelder, D. Stravopodis, Y. Weinstein, J. Ihle (1996)
Erythropoietin induces activation of Stat5 through association with specific tyrosines on the receptor that are not required for a mitogenic responseMolecular and Cellular Biology, 16
T. Nosaka, J. Deursen, R. Tripp, W. Thierfelder, B. Witthuhn, A. McMickle, P. Doherty, G. Grosveld, J. Ihle (1995)
Defective Lymphoid Development in Mice Lacking Jak3Science, 270
Tiziana Musso, James Johnston, D. Linnekin, Luigi Varesio, T. Rowe, John O'Shea, Daniel McVicar (1995)
Regulation of JAK3 expression in human monocytes: phosphorylation in response to interleukins 2, 4, and 7The Journal of Experimental Medicine, 181
M. David, E. Petricoin, C. Benjamin, R. Pine, Michael Weber, A. Larner (1995)
Requirement for MAP kinase (ERK2) activity in interferon alpha- and interferon beta-stimulated gene expression through STAT proteins.Science, 269 5231
J. Hou, U. Schindler, W. Henzel, Susan Wong, S. McKnight (1995)
Identification and purification of human Stat proteins activated in response to interleukin-2.Immunity, 2 4
Hiroshi Wakao, Fabrice Gouilleux, Bernd Groner (1994)
Mammary gland factor (MGF) is a novel member of the cytokine regulated transcription factor gene family and confers the prolactin response.The EMBO Journal, 13
J. Johnston, C. Bacon, M. Riedy, J. O’Shea (1996)
Signaling by IL‐2 and related cytokines: JAKs, STATs, and relationship to immunodeficiencyJournal of Leukocyte Biology, 60
M. Gauzzi, L. Velazquez, R. Mckendry, K. Mogensen, M. Fellous, S. Pellegrini (1996)
Interferon-α-dependent Activation of Tyk2 Requires Phosphorylation of Positive Regulatory Tyrosines by Another Kinase*The Journal of Biological Chemistry, 271
V. Boussiotis, D. Barber, Takayuki Nakarai, G. Freeman, John Gribben, Gregory Bernstein, Alan D’Andrea, Jerome Ritz, Lee Nadler (1994)
Prevention of T cell anergy by signaling through the gamma c chain of the IL-2 receptor.Science, 266 5187
C. Gurniak, D. Thomis, L. Berg (1997)
Genomic structure and promoter region of the murine Janus-family tyrosine kinase, Jak3.DNA and cell biology, 16 1
Zilong Wen, Z. Zhong, J. Darnell (1995)
Maximal activation of transcription by statl and stat3 requires both tyrosine and serine phosphorylationCell, 82
A. Dent, A. Shaffer, Xin Yu, D. Allman, L. Staudt (1997)
Control of inflammation, cytokine expression, and germinal center formation by BCL-6.Science, 276 5312
Greg Conway, Ayelet Margoliath, Sharon Wong-Madden, Richard Roberts, Walter Gilbert (1997)
Jak1 kinase is required for cell migrations and anterior specification in zebrafish embryos.Proceedings of the National Academy of Sciences of the United States of America, 94 7
T. Schaefer, L. Sanders, D. Nathans (1995)
Cooperative transcriptional activity of Jun and Stat3 beta, a short form of Stat3.Proceedings of the National Academy of Sciences of the United States of America, 92 20
H. Nakajima, E. Shores, M. Noguchi, W. Leonard (1997)
The Common Cytokine Receptor γ Chain Plays an Essential Role in Regulating Lymphoid HomeostasisThe Journal of Experimental Medicine, 185
D. Thomis, L. Berg (1997)
Peripheral Expression of Jak3 Is Required to Maintain T Lymphocyte FunctionThe Journal of Experimental Medicine, 185
S. Bhattacharya, R. Eckner, S. Grossman, Elizabeth Oldread, Z. Arany, Alan D’Andrea, D. Livingston (1996)
Cooperation of Stat2 and p300/CBP in signalling induced by interferon-αNature, 383
U. Schindler, Pengguang Wu, M. Rothe, M. Brasseur, S. McKnight (1995)
Components of a Stat recognition code: evidence for two layers of molecular selectivity.Immunity, 2 6
Y. Chin, M. Kitagawa, Wu-Chou Su, Zhi-Hao You, Y. Iwamoto, Xin-Yuan Fu (1996)
Cell Growth Arrest and Induction of Cyclin-Dependent Kinase Inhibitor p21WAF1/CIP1 Mediated by STAT1Science, 272
Mathias Müller, J. Briscoe, C. Laxton, D. Guschin, A. Ziemiecki, O. Silvennoinen, A. Harpur, G. Barbieri, B. Witthuhn, C. Schindler, S. Pellegrini, A. Wilks, J. Ihle, G. Stark, lan Kerr (1993)
The protein tyrosine kinase JAK1 complements defects in interferon-α/β and -γ signal transductionNature, 366
T. Migone, Jian-Xin Lin, A. Cereseto, J. Mulloy, J. O’Shea, G. Franchini, W. Leonard (1995)
Constitutively activated Jak-STAT pathway in T cells transformed with HTLV-I.Science, 269 5220
Jian-Xin Lin, T. Migone, Monica Tseng, M. Friedmann, J. Weatherbee, Li Zhou, Akira Yamauchi, E. Bloom, J. Mietz, S. John, W. Leonard (1995)
The role of shared receptor motifs and common Stat proteins in the generation of cytokine pleiotropy and redundancy by IL-2, IL-4, IL-7, IL-13, and IL-15.Immunity, 2 4
F. Lee, J. Hagler, Zhijian Chen, T. Maniatis (1997)
Activation of the IκBα Kinase Complex by MEKK1, a Kinase of the JNK PathwayCell, 88
J. Hou, U. Schindler, W. Henzel, Tze Ho, M. Brasseur, S. McKnight (1994)
An interleukin-4-induced transcription factor: IL-4 Stat.Science, 265 5179
M. Chang, G. Chang, J. Leu, F. Huang, C. Chou, C. Huang, T. Lo (1996)
Expression, characterization, and genomic structure of carp JAK1 kinase gene.DNA and cell biology, 15 10
Xiaokui Zhang, J. Blenis, Heng Li, C. Schindler, S. Chen‐Kiang (1995)
Requirement of serine phosphorylation for formation of STAT-promoter complexes.Science, 267 5206
A. Greenlund, Michael Farrar, B. Viviano, Robert Schreiber (1994)
Ligand‐induced IFN gamma receptor tyrosine phosphorylation couples the receptor to its signal transduction system (p91).The EMBO Journal, 13
U. Klingmüller, U. Lorenz, L. Cantley, B. Neel, H. Lodish (1995)
Specific recruitment of SH-PTP1 to the erythropoietin receptor causes inactivation of JAK2 and termination of proliferative signalsCell, 80
Wu-Chou Su, M. Kitagawa, N. Xue, B. Xie, S. Garofalo, Jay Cho, C. Deng, W. Horton, Xin-Yuan Fu (1997)
Activation of Statl by mutant fibroblast growth-factor receptor in thanatophoric dysplasia type II dwarfismNature, 386
Silva Hanissian, R. Geha (1997)
Jak3 is associated with CD40 and is critical for CD40 induction of gene expression in B cells.Immunity, 6 4
Riqiang Yan, Hong Luo, James Darnell, C. Dearolf (1996)
A JAK-STAT pathway regulates wing vein formation in Drosophila.Proceedings of the National Academy of Sciences of the United States of America, 93 12
P. Sperisen, San Wang, Elisabetta Soldaini, M. Pla, Corinne Rusterholz, Philipp Bucher, P. Corthésy, P. Reichenbach, Markus Nabholz (1995)
Mouse interleukin-2 receptor alpha gene expression. Interleukin-1 and interleukin-2 control transcription via distinct cis-acting elements.The Journal of biological chemistry, 270 18
L. Velazquez, M. Fellous, G. Stark, S. Pellegrini (1992)
A protein tyrosine kinase in the interferon α β signaling pathwayCell, 70
W. Leonard (1996)
STATs and cytokine specificityNature Medicine, 2
R. Starr, T. Willson, E. Viney, Leecia Murray, J. Rayner, B. Jenkins, T. Gonda, W. Alexander, D. Metcalf, N. Nicola, D. Hilton (1997)
A family of cytokine-inducible inhibitors of signallingNature, 387
N. Stahl, T. Farruggella, T. Boulton, Z. Zhong, J. Darnell, G. Yancopoulos (1995)
Choice of STATs and other substrates specified by modular tyrosine-based motifs in cytokine receptorsScience, 267
A. Rao, C. Luo, P. Hogan (1997)
Transcription factors of the NFAT family: regulation and function.Annual review of immunology, 15
B. Witthuhn, F. Quelle, O. Silvennoinen, T. Yi, Bo Tang, O. Miura, J. Ihle (1993)
JAK2 associates with the erythropoietin receptor and is tyrosine phosphorylated and activated following stimulation with erythropoietinCell, 74
Anna Villa, Marina Sironi, Paolo Macchi, Cristian Matteucci, L. Notarangelo, P. Vezzoni, A. Mantovani (1996)
Monocyte function in a severe combined immunodeficient patient with a donor splice site mutation in the Jak3 gene.Blood, 88 3
R. Haspel, M. Salditt-Georgieff, J. Darnell (1996)
The rapid inactivation of nuclear tyrosine phosphorylated Stat1 depends upon a protein tyrosine phosphatase.The EMBO Journal, 15
B. Nelson, J. Lord, P. Greenberg (1994)
Cytoplasmic domains of the interleukin-2 receptor β and γ chains mediate the signal for T-cell proliferationNature, 369
K. Shuai, Jiayu Liao, Mark Song (1996)
Enhancement of antiproliferative activity of gamma interferon by the specific inhibition of tyrosine dephosphorylation of Stat1Molecular and Cellular Biology, 16
Seung Park, Kaoru Saijo, Takamune Takahashi, Masataka Osawa, Hisashi Areas, Nakami Hirayama, Keiko Miyake, Hiromitsu Nakauchi, Takuji Shirasawa, Takashi Saito (1995)
Developmental defects of lymphoid cells in Jak3 kinase-deficient mice.Immunity, 3 6
P. Macchi, A. Villa, S. Giliani, M. Sacco, A. Frattini, F. Porta, A. Ugazio, J. Johnston, F. Candotti, John O'Sheai, P. Vezzoni, L. Notarangelo (1995)
Mutations of Jak-3 gene in patients with autosomal severe combined immune deficiency (SCID)Nature, 377
Shin-Hyeong Cho, C. Bacon, C. Sudarshan, R. Rees, D. Finbloom, R. Pine, J. O’Shea (1996)
Activation of STAT4 by IL-12 and IFN-alpha: evidence for the involvement of ligand-induced tyrosine and serine phosphorylation.Journal of immunology, 157 11
S. Kotenko, L. Izotova, B. Pollack, G. Muthukumaran, K. Paukku, O. Silvennoinen, J. Ihle, S. Pestka (1996)
Other Kinases Can Substitute for Jak2 in Signal Transduction by Interferon-γ*The Journal of Biological Chemistry, 271
M. Walter, W. Windsor, T. Nagabhushan, D. Lundell, C. Lunn, P. Zauodny, S. Narula (1995)
Crystal structure of a complex between interferon-γ and its soluble high-affinity receptorNature, 376
N. Stahl, T. Boulton, T. Farruggella, N. Ip, S. Davis, B. Witthuhn, F. Quelle, O. Silvennoinen, G. Barbieri, S. Pellegrini, J. Ihle, G. Yancopoulos (1994)
Association and activation of Jak-Tyk kinases by CNTF-LIF-OSM-IL-6 beta receptor components.Science, 263 5143
Koh Yamamoto, F. Quelle, W. Thierfelder, Kreider Bl, D. Gilbert, Nancy Jenkins, N. Copeland, O. Silvennoinen, J. Ihle (1994)
Stat4, a novel gamma interferon activation site-binding protein expressed in early myeloid differentiationMolecular and Cellular Biology, 14
D. Watling, D. Guschin, Mathias Müller, O. Silvennoinen, B. Witthuhn, F. Quelle, N. Rogers, C. Schindler, G. Stark, J. Ihle, lan Kerr (1993)
Complementation by the protein tyrosine kinase JAK2 of a mutant cell line defective in the interferon-& gamma; signal transduction pathwayNature, 366
N. Danial, Alessandra Pernis, Paul Rothman (1995)
Jak-STAT signaling induced by the v-abl oncogene.Science, 269 5232
J. Zou, D. Presky, Chang‐you Wu, U. Gubler (1997)
Differential Associations between the Cytoplasmic Regions of the Interleukin-12 Receptor Subunits β1 and β2 and JAK Kinases*The Journal of Biological Chemistry, 272
D. Novick, B. Cohen, M. Rubinstein (1994)
The human interferon α β receptor: Characterization and molecular cloningCell, 77
Xin-Yuan Fu (1992)
A transcription factor with SH2 and SH3 domains is directly activated by an interferon α-induced cytoplasmic protein tyrosine kinase(s)Cell, 70
Min Chen, Alan Cheng, Yi-Qing Chen, Anka Hymel, Eric Hanson, Lida Kimmel, Yasuhiro Minami, Tadatsugu Taniguchi, P. Changelian, John O'Shea (1997)
The amino terminus of JAK3 is necessary and sufficient for binding to the common gamma chain and confers the ability to transmit interleukin 2-mediated signals.Proceedings of the National Academy of Sciences of the United States of America, 94 13
S. Qureshi, S. Leung, I. Kerr, G. Stark, J. Darnell (1996)
Function of Stat2 protein in transcriptional activation by alpha interferonMolecular and Cellular Biology, 16
D. Ascherman, T. Migone, M. Friedmann, W. Leonard (1997)
Interleukin-2 (IL-2)-mediated induction of the IL-2 receptor alpha chain gene. Critical role of two functionally redundant tyrosine residues in the IL-2 receptor beta chain cytoplasmic domain and suggestion that these residues mediate more than Stat5 activation.The Journal of biological chemistry, 272 13
Chao-Lan Yu, D. Meyer, G. Campbell, A. Larner, C. Carter-Su, J. Schwartz, R. Jove (1995)
Enhanced DNA-binding activity of a Stat3-related protein in cells transformed by the Src oncoprotein.Science, 269 5220
M. Riedy, A. Dutra, T. Blake, W. Modi, B. Lal, J. Davis, A. Bosse, J. O’Shea, J. Johnston (1996)
Genomic sequence, organization, and chromosomal localization of human JAK3.Genomics, 37 1
Hiroshi Nakajima, Xiuwen Liu, Anthony Wynshaw-Boris, Louis Rosenthal, Kazunori Imada, D. Finbloom, Lothar Hennighausen, Warren Leonard (1997)
An indirect effect of Stat5a in IL-2-induced proliferation: a critical role for Stat5a in IL-2-mediated IL-2 receptor alpha chain induction.Immunity, 7 5
M. Noguchi, Hua-Wei Yi, H. Rosenblatt, A. Filipovich, S. Adelstein, W. Modi, O. McBride, W. Leonard (1993)
Interleukin-2 receptor γ chain mutation results in X-linked severe combined immunodeficiency in humansCell, 73
G. Crabtree, N. Clipstone (1994)
Signal transmission between the plasma membrane and nucleus of T lymphocytes.Annual review of biochemistry, 63
M. Friedmann, T. Migone, S. Russell, W. Leonard (1996)
Different interleukin 2 receptor beta-chain tyrosines couple to at least two signaling pathways and synergistically mediate interleukin 2-induced proliferation.Proceedings of the National Academy of Sciences of the United States of America, 93 5
P. Tortolani, B. Lal, A. Riva, J. Johnston, Y. Chen, G. Reaman, M. Beckwith, D. Longo, J. Ortaldo, K. Bhatia, I. McGrath, J. Kehrl, J. Tuscano, D. McVicar, J. O’Shea (1995)
Regulation of JAK3 expression and activation in human B cells and B cell malignancies.Journal of immunology, 155 11
E. Stöcklin, M. Wissler, F. Gouilleux, B. Groner (1996)
Functional interactions between Stat5 and the glucocorticoid receptorNature, 383
Xiang Xu, Ya‐Lin Sun, T. Hoey (1996)
Cooperative DNA Binding and Sequence-Selective Recognition Conferred by the STAT Amino-Terminal DomainScience, 273
S. Frank, Woelsung Yi, Yanming Zhao, J. Goldsmith, Gretchen Gilliland, Jing Jiang, I. Sakai, A. Kraft (1995)
Regions of the JAK2 Tyrosine Kinase Required for Coupling to the Growth Hormone Receptor (*)The Journal of Biological Chemistry, 270
Qian Zhang, Irena Nowak, E. Vonderheid, Alain Rook, Marshall Kadin, Peter Nowell, Leslie Shaw, Mariusz Wasik (1996)
Activation of Jak/STAT proteins involved in signal transduction pathway mediated by receptor for interleukin 2 in malignant T lymphocytes derived from cutaneous anaplastic large T-cell lymphoma and Sezary syndrome.Proceedings of the National Academy of Sciences of the United States of America, 93 17
J. Durbin, Renée Hackenmiller, M. Simon, D. Levy (1996)
Targeted Disruption of the Mouse Stat1 Gene Results in Compromised Innate Immunity to Viral DiseaseCell, 84
S. Hubbard, Lei Wei, W. Hendrickson (1994)
Crystal structure of the tyrosine kinase domain of the human insulin receptorNature, 372
T. Takeshita, Tomikazu Arita, Masaya Higuchi, H. Asao, Kazuhiro Endo, Hiroshi Kuroda, N. Tanaka, K. Murata, Naoto Ishii, K. Sugamura (1997)
STAM, signal transducing adaptor molecule, is associated with Janus kinases and involved in signaling for cell growth and c-myc induction.Immunity, 6 4
S. Frank, G. Gilliland, A. Kraft, C. Arnold (1994)
Interaction of the growth hormone receptor cytoplasmic domain with the JAK2 tyrosine kinase.Endocrinology, 135 5
T. Matsuguchi, R. Inhorn, N. Carlesso, G. Xu, B. Druker, J. Griffin (1995)
Tyrosine phosphorylation of p95Vav in myeloid cells is regulated by GM‐CSF, IL‐3 and steel factor and is constitutively increased by p210BCR/ABL.The EMBO Journal, 14
G. Jahns‐Streubel, C. Reuter, U. Landwehr, M. Unterhalt, E. Schleyer, Bernhard Wörmann, T. Büchner, W. Hiddemann (1997)
Activity of thymidine kinase and of polymerase alpha as well as activity and gene expression of deoxycytidine deaminase in leukemic blasts are correlated with clinical response in the setting of granulocyte-macrophage colony-stimulating factor-based priming before and during TAD-9 induction therapyBlood, 90 5
L. Velazquez, K. Mogensen, G. Barbieri, M. Fellous, G. Uzé, S. Pellegrini (1995)
Distinct Domains of the Protein Tyrosine Kinase tyk2 Required for Binding of Interferon-/ and for Signal Transduction *The Journal of Biological Chemistry, 270
A. Baldwin (1996)
THE NF-κB AND IκB PROTEINS: New Discoveries and InsightsAnnual Review of Immunology, 14
F. Quelle, Noriko, Sato, A. Bruce, Witthuhn, '. Inhorn, MAiTHIAS Eder, Atsusfii Miyajima, D. James, Griffin, N. James, '. Ihle (1994)
JAK2 associates with the beta c chain of the receptor for granulocyte-macrophage colony-stimulating factor, and its activation requires the membrane-proximal regionMolecular and Cellular Biology, 14
D. Guschin, N. Rogers, J. Briscoe, B. Witthuhn, D. Watling, F. Horn, S. Pellegrini, K. Yasukawa, P. Heinrich, George Stark (1995)
A major role for the protein tyrosine kinase JAK1 in the JAK/STAT signal transduction pathway in response to interleukin‐6.The EMBO Journal, 14
C. Chung, Jiayu Liao, Bin Liu, Xiaoping Rao, P. Jay, P. Berta, K. Shuai (1997)
Specific inhibition of Stat3 signal transduction by PIAS3.Science, 278 5344
O. Silvennoinen, J. Ihle, J. Schlessinger, D. Levy (1993)
Interferon-induced nuclear signalling by Jak protein tyrosine kinasesNature, 366
James Briscoe, N. Rogers, B. Witthuhn, D. Watling, A. Harpur, Andrew Wilks, George Stark, J. Ihle, Ian Kerr (1996)
Kinase‐negative mutants of JAK1 can sustain interferon‐gamma‐inducible gene expression but not an antiviral state.The EMBO Journal, 15
M. David, Haiyan Chen, S. Goelz, A. Larner, B. Neel (1995)
Differential regulation of the alpha/beta interferon-stimulated Jak/Stat pathway by the SH2 domain-containing tyrosine phosphatase SHPTP1Molecular and Cellular Biology, 15
A. Harpur, Anne-Catherine Andres, A. Ziemiecki, R. Aston, A. Wilks (1992)
JAK2, a third member of the JAK family of protein tyrosine kinases.Oncogene, 7 7
D. Harrison, R. Binari, T. Nahreini, M. Gilman, N. Perrimon (1995)
Activation of a Drosophila Janus kinase (JAK) causes hematopoietic neoplasia and developmental defects.The EMBO Journal, 14
V. Lacronique, A. Boureux, V. Valle, H. Poirel, C. Quang, M. Mauchauffé, C. Berthou, M. Lessard, R. Berger, J. Ghysdael, O. Bernard (1997)
A TEL-JAK2 fusion protein with constitutive kinase activity in human leukemia.Science, 278 5341
James Johnston, Chris Bacon, S. David, Finbloomi, Robert Rees, David, Kaplanii, Kyo Shibuyaii, J. Ortaldo, Sanjay GUPTAtt, YI Chen, Judy GIRItt, John O'Shea (1995)
Tyrosine phosphorylation and activation of STAT5, STAT3, and Janus kinases by interleukins 2 and 15.Proceedings of the National Academy of Sciences of the United States of America, 92 19
C. Horvath, Zilong Wen, J. Darnell (1995)
A STAT protein domain that determines DNA sequence recognition suggests a novel DNA-binding domain.Genes & development, 9 8
Sarah Russell, J. Johnston, Masayuki Noguchi, M. Kawamura, Chris Bacon, Chris Bacon, M. Friedmann, M. Berg, Daniel McVicar, B. Witthuhn, O. Silvennoinen (1994)
Interaction of IL-2R beta and gamma c chains with Jak1 and Jak3: implications for XSCID and XCID.Science, 266 5187
Aseem Kumar, Aseem Kumar, M. Commane, T. Flickinger, C. Horvath, G. Stark (1997)
Defective TNF-α-Induced Apoptosis in STAT1-Null Cells Due to Low Constitutive Levels of CaspasesScience, 278
K. Lai, Yan‐kun Jin, D. Graham, B. Witthuhn, J. Ihle, Edison Liu (1995)
A Kinase-deficient Splice Variant of the Human JAK3 Is Expressed in Hematopoietic and Epithelial Cancer Cells (*)The Journal of Biological Chemistry, 270
Gerald Feldman, Louis Rosenthal, Xiuwen Liu, Mark Hayes, Anthony Wynshaw-Boris, Warren Leonard, Lothar Hennighausen, D. Finbloom (1997)
STAT5A-deficient mice demonstrate a defect in granulocyte-macrophage colony-stimulating factor-induced proliferation and gene expression.Blood, 90 5
D. Thomis, C. Gurniak, E. Tivol, A. Sharpe, L. Berg (1995)
Defects in B Lymphocyte Maturation and T Lymphocyte Activation in Mice Lacking Jak3Science, 270
Kristin Adler, Günther Gerisch, Ulrike Hugo, A. Lupas, Anton Schweiger (1996)
Classification of tyrosine kinases from Dictyostelium discoideum with two distinct, complete or incomplete catalytic domainsFEBS Letters, 395
Christine Gurniak, Leslie Berg (1996)
Murine JAK3 is preferentially expressed in hematopoietic tissues and lymphocyte precursor cells.Blood, 87 8
Mohammad Azam, H. Erdjument-Bromage, Brendt Kreider, Min Xia, Fredrick Quelle, Rita Basu, Chris Saris, P. Tempst, James lhle, Christian Schindler (1995)
Interleukin‐3 signals through multiple isoforms of Stat5.The EMBO Journal, 14
Akira Matsumoto, Akira Matsumoto, Masaaki Masuhara, Masaaki Masuhara, Kaoru Mitsui, Kaoru Mitsui, Masahiro Yokouchi, Masahiro Yokouchi, Motoaki Ohtsubo, Motoaki Ohtsubo, Hiroyuki Misawa, Hiroyuki Misawa, Atsushi Miyajima, Atsushi Miyajima, A. Yoshimura (1997)
CIS, a cytokine inducible SH2 protein, is a target of the JAK-STAT5 pathway and modulates STAT5 activation.Blood, 89 9
O. Colamonici, H. Uyttendaele, P. Domanski, Hai Yan, J. Krolewski (1994)
p135tyk2, an interferon-alpha-activated tyrosine kinase, is physically associated with an interferon-alpha receptor.The Journal of biological chemistry, 269 5
T. Kawata, A. Shevchenko, M. Fukuzawa, K. Jermyn, N. Totty, N. Zhukovskaya, Alistair Sterling, M. Mann, Jeffrey Williams (1997)
SH2 Signaling in a Lower Eukaryote: A STAT Protein That Regulates Stalk Cell Differentiation in DictyosteliumCell, 89
Mohammad Azam, Carolyn Lee, I. Strehlow, Christian Schindler (1997)
Functionally distinct isoforms of STAT5 are generated by protein processing.Immunity, 6 6
S. John, C. Robbins, W. Leonard (1996)
An IL‐2 response element in the human IL‐2 receptor alpha chain promoter is a composite element that binds Stat5, Elf‐1, HMG‐I(Y) and a GATA family protein.The EMBO Journal, 15
K. Saijo, Seung Park, Y. Ishida, H. Arase, T. Saito (1997)
Crucial Role of Jak3 in Negative Selection of Self-reactive T CellsThe Journal of Experimental Medicine, 185
G. Udy, Raewyn Towers, R. Snell, R. Wilkins, Soo-Hee Park, P. Ram, D. Waxman, H. Davey (1997)
Requirement of STAT5b for sexual dimorphism of body growth rates and liver gene expression.Proceedings of the National Academy of Sciences of the United States of America, 94 14
L. Argetsinger, G. Campbell, Xianjie Yang, B. Witthuhn, O. Silvennoinen, J. Ihle, C. Carter-Su (1993)
Identification of JAK2 as a growth hormone receptor-associated tyrosine kinaseCell, 74
J. Ihle, B. Witthuhn, F. Quelle, Koh Yamamoto, O. Silvennoinen (1995)
Signaling through the hematopoietic cytokine receptors.Annual review of immunology, 13
P. Lécine, M. Algarté, P. Rameil, C. Beadling, P. Bucher, M. Nabholz, J. Imbert (1996)
Elf-1 and Stat5 bind to a critical element in a new enhancer of the human interleukin-2 receptor alpha geneMolecular and Cellular Biology, 16
R. Yan, S. Small, C. Desplan, C. Dearolf, J. Darnell (1996)
Identification of a Stat Gene That Functions in Drosophila DevelopmentCell, 84
Akihiko Yoshimura, Masatoshi Ichihara, I. Kinjyo, I. Kinjyo, Maiko Moriyama, Maiko Moriyama, Neat Copeland, D. Gilbert, Nancy Jenkins, Takahiko Hara, Atsushi Miyajima (1996)
Mouse oncostatin M: an immediate early gene induced by multiple cytokines through the JAK‐STAT5 pathway.The EMBO Journal, 15
S. Ali, Z. Chen, J. Lebrun, W. Vogel, A. Kharitonenkov, P. Kelly, A. Ullrich (1996)
PTP1D is a positive regulator of the prolactin signal leading to beta‐casein promoter activation.The EMBO Journal, 15
N. Copeland, D. Gilbert, Chris Schindler, Chris Schindler, Z. Zhong, Zilong Wen, James Darnell, Alice Mui, Atsushi Miyajima, Atsushi Miyajima, Frederick Quelle, J. Ihle, Nancy Jenkins (1995)
Distribution of the mammalian Stat gene family in mouse chromosomes.Genomics, 29 1
F. Candotti, S. Oakes, J. Johnston, S. Giliani, R. Schumacher, P. Mella, M. Fiorini, A. Ugazio, R. Badolato, L. Notarangelo, F. Bozzi, Paolo Macchi, D. Strina, P. Vezzoni, R. Blaese, J. O’Shea, A. Villa (1997)
Structural and functional basis for JAK3-deficient severe combined immunodeficiency.Blood, 90 10
W. Thierfelder, J. Deursen, Koh Yamamoto, R. Tripp, S. Sarawar, R. Carson, M. Sangster, D. Vignali, P. Doherty, G. Grosveld, J. Ihle (1996)
Requirement for Stat4 in interleukin-12-mediated responses of natural killer and T cellsNature, 382
F. Candotti, Scott Oakes, James Johnston, L. Notarangelo, John 'shea, R. Blaese (1996)
In vitro correction of JAK3-deficient severe combined immunodeficiency by retroviral-mediated gene transductionThe Journal of Experimental Medicine, 183
Andrew Horvai, Lan Xu, Edward Korzus, G. Brard, Daniel Kalafus, T. Mullen, David Rose, Michael Rosenfeld, Christopher Glass (1997)
Nuclear integration of JAK/STAT and Ras/AP-1 signaling by CBP and p300.Proceedings of the National Academy of Sciences of the United States of America, 94 4
Jian-Xin Lin, J. Mietz, W. Modi, S. John, W. Leonard (1996)
Cloning of Human Stat5BThe Journal of Biological Chemistry, 271
D. Chauhan, S. Kharbanda, A. Ogata, M. Urashima, David Frank, Najma Malik, ll DonaldWKufe, Kenneth Anderson (1995)
Oncostatin M induces association of Grb2 with Janus kinase JAK2 in multiple myeloma cellsThe Journal of Experimental Medicine, 182
I. Firmbach-Kraft, M. Byers, Shows Tb, R. Dalla-Favera, John Krolewski (1990)
tyk2, prototype of a novel class of non-receptor tyrosine kinase genes.Oncogene, 5 9
Yanming Zhao, F. Wagner, S. Frank, A. Kraft (1995)
The Amino-terminal Portion of the JAK2 Protein Kinase Is Necessary For Binding and Phosphorylation of the Granulocyte-Macrophage Colony-stimulating Factor Receptor β Chain (*)The Journal of Biological Chemistry, 270
J. Johnston, M. Kawamura, R. Kirken, Yi-Qing Chen, T. Blake, K. Shibuya, J. Ortaldo, D. McVicar, J. O’Shea (1994)
Phosphorylation and activation of the Jak-3 Janus kinase in response to interleukin-2Nature, 370
B. Witthuhn, O. Silvennoinen, O. Miura, K. Lai, C. Cwik, E. Liu, J. Ihle (1994)
Involvement of the Jak-3 Janus kinase in signalling by interleukins 2 and 4 in lymphoid and myeloid cellsNature, 370
Jue Zhang, U. Vinkemeier, W. Gu, D. Chakravarti, C. Horvath, J. Darnell (1996)
Two contact regions between Stat1 and CBP/p300 in interferon γ signalingProceedings of the National Academy of Sciences of the United States of America, 93
M. Goldsmith, S. Lai, Weiduan Xu, M. Amaral, E. Kuczek, L. Parent, G. Mills, K. Tarr, G. Longmore, W. Greene (1995)
Growth Signal Transduction by the Human Interleukin-2 Receptor Requires Cytoplasmic Tyrosines of the β Chain and Non-tyrosine Residues of the γc Chain (*)The Journal of Biological Chemistry, 270
Takamune Takahashi, T. Shirasaw (1994)
Molecular cloning of rat JAK3, a novel member of the JAK family of protein tyrosine kinasesFEBS Letters, 342
T. Kim, T. Maniatis (1996)
Regulation of Interferon-γ-Activated STAT1 by the Ubiquitin-Proteasome PathwayScience, 273
R. Binari, Norbert Perrimon (1994)
Stripe-specific regulation of pair-rule genes by hopscotch, a putative Jak family tyrosine kinase in Drosophila.Genes & development, 8 3
Erika Bach, Michel Aguet, Robert Schreiber (1997)
The IFN gamma receptor: a paradigm for cytokine receptor signaling.Annual review of immunology, 15
M. Kaplan, Ya‐Lin Sun, T. Hoey, M. Grusby (1996)
Impaired IL-12 responses and enhanced development of Th2 cells in Stat4-deficient miceNature, 382
U. Vinkemeier, Steven Cohen, I. Moarefi, B. Chait, John, Kuriyan, J. Darnell (1996)
DNA binding of in vitro activated Stat1 alpha, Stat1 beta and truncated Stat1: interaction between NH2‐terminal domains stabilizes binding of two dimers to tandem DNA sites.The EMBO Journal, 15
S. Russell, N. Tayebi, H. Nakajima, M. Riedy, Joseph Roberts, M. Aman, T. Migone, M. Noguchi, M. Markert, R. Buckley, J. O’Shea, W. Leonard (1995)
Mutation of Jak3 in a Patient with SCID: Essential Role of Jak3 in Lymphoid DevelopmentScience, 270
A. Yoshimura, T. Ohkubo, T. Kiguchi, N. Jenkins, D. Gilbert, N. Copeland, T. Hara, A. Miyajima (1995)
A novel cytokine‐inducible gene CIS encodes an SH2‐containing protein that binds to tyrosine‐phosphorylated interleukin 3 and erythropoietin receptors.The EMBO Journal, 14
▪ Abstract Cytokines and interferons are molecules that play central roles in the regulation of a wide array of cellular functions in the lympho-hematopoietic system. These factors stimulate proliferation, differentiation, and survival signals, as well as specialized functions in host resistance to pathogens. Although cytokines are known to activate multiple signaling pathways that together mediate these important functions, one of these pathways, the Jak-STAT pathway, is the focus of this chapter. This pathway is triggered by both cytokines and interferons, and it very rapidly allows the transduction of an extracellular signal into the nucleus. The pathway uses a novel mechanism in which cytosolic latent transcription factors, known as signal transducers and activators of transcription (STATs), are tyrosine phosphorylated by Janus family tyrosine kinases (Jaks), allowing STAT protein dimerization and nuclear translocation. STATs then can modulate the expression of target genes. The basic biology of this system, including the range of known Jaks and STATs, is discussed, as are the defects in animals and humans lacking some of these signaling molecules.
Annual Review of Immunology – Annual Reviews
Published: Apr 1, 1998
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