Literature DB >> 10071751

The Jak-STAT pathway: cytokine signalling from the receptor to the nucleus.

M H Heim1.   

Abstract

The Jak-STAT pathway was originally discovered through the study of interferon induced intracellular signal transduction. Meanwhile, a large number of cytokines, hormones and growth factors have been found to activate Jaks and STATs. Jaks (Janus Kinases) are a unique class of tyrosine kinases that associate with cytokine receptors. Upon ligand binding, they activate members of the Signal Transducers and Activators of Transcription (STAT) family through phosphorylation on a single tyrosine. Activated STATs form dimers, translocate to the nucleus, bind to specific response elements in promotors of target genes, and transcriptionally activate these genes. Both positive and negative regulations of the Jak-STAT pathway have been identified. In a positive feedback loop, interferons transcriptionally activate the genes for components of the interferon stimulated gene factor 3 (ISGF3). A number of cytokines that activate the Jak-STAT pathway, e.g. IL-6, IL-4, LIF, G-CSF, have been shown to upregulate the expression of SOCS-JABs-SSIs, a recently discovered class of STAT inhibitors. Targeted disruption of genes for a number of Jaks and STATs in mice have revealed specific biological functions for many of them. Although most of the STATs are activated in cell culture by many different ligands, STAT knockout mice mostly show defects in a single or a few cytokine dependent processes. STAT1 knockout mice have an impaired interferon signalling, STAT4 knockouts impaired IL-12 signalling, STAT5a knockouts impaired prolactin signalling, STAT5b knockouts impaired growth hormone signalling, and STAT6 knockout impaired IL-4 and IL-13 signalling. Defects in the Jak-STAT pathway have already been identified in a number of human diseases. Prominent amongst them are leukaemias, lymphomas and inherited immunodeficiency syndromes. It can be expected that additional Jak-STAT related diseases will be identified over the next years. To date, specific STAT inhibitory drugs are not known, but a number of specific protein-protein interactions in the Jak-STAT pathway are potential targets for pharmaceutical interventions.

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Year:  1999        PMID: 10071751     DOI: 10.3109/10799899909036638

Source DB:  PubMed          Journal:  J Recept Signal Transduct Res        ISSN: 1079-9893            Impact factor:   2.092


  69 in total

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Journal:  Am J Pathol       Date:  1999-05       Impact factor: 4.307

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3.  Rac1-induced cell migration requires membrane recruitment of the nuclear oncogene SET.

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Review 4.  Current status and challenges of cytokine pharmacology.

Authors:  Z Zídek; P Anzenbacher; E Kmonícková
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5.  Berberine-induced Inactivation of Signal Transducer and Activator of Transcription 5 Signaling Promotes Male-specific Expression of a Bile Acid Uptake Transporter.

Authors:  Pengli Bu; Yuan Le; Yue Zhang; Youcai Zhang; Xingguo Cheng
Journal:  J Biol Chem       Date:  2017-02-01       Impact factor: 5.157

6.  Alpha interferon induces long-lasting refractoriness of JAK-STAT signaling in the mouse liver through induction of USP18/UBP43.

Authors:  Magdalena Sarasin-Filipowicz; Xueya Wang; Ming Yan; Francois H T Duong; Valeria Poli; Douglas J Hilton; Dong-Er Zhang; Markus H Heim
Journal:  Mol Cell Biol       Date:  2009-06-29       Impact factor: 4.272

7.  Decrease in invasion of HTR-8/SVneo trophoblastic cells by interferon gamma involves cross-communication of STAT1 and BATF2 that regulates the expression of JUN.

Authors:  Sonam Verma; Rahul Pal; Satish Kumar Gupta
Journal:  Cell Adh Migr       Date:  2018-02-20       Impact factor: 3.405

8.  S-adenosyl-methionine and betaine improve early virological response in chronic hepatitis C patients with previous nonresponse.

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9.  STAT3 is involved in phosphatidic acid-induced Bcl-2 expression in HeLa cells.

Authors:  Hye-Jin Choi; Jung Han Lee; Shin-Young Park; Ju Hwan Cho; Joong-Soo Han
Journal:  Exp Mol Med       Date:  2009-02-28       Impact factor: 8.718

Review 10.  Protein kinases and associated pathways in pluripotent state and lineage differentiation.

Authors:  Melina Shoni; Kathy O Lui; Demetrios G Vavvas; Michael G Muto; Ross S Berkowitz; Nikolaos Vlahos; Shu-Wing Ng
Journal:  Curr Stem Cell Res Ther       Date:  2014       Impact factor: 3.828

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