Gene/Protein Disease Symptom Drug Enzyme Compound
Pivot Concepts:   Target Concepts:
Query: UNIPROT:P51812 (mitogen-activated protein)
10,636 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

A primary signaling cascade responsible for the expression of cytokine-stimulated immediate early genes involves the activation of the Jak/Stat pathway. In addition to being tyrosine-phosphorylated, several signal transducers and activators of transcription (Stats), including Stat1alpha, Stat3, and Stat4, are phosphorylated on a conserved serine residue, which is a consensus phosphorylation site for mitogen-activated protein kinases (MAPKs). Serine phosphorylation of Stat1alpha is required for maximal transcriptional activation of early response genes by interferon gamma (IFNgamma) as well as the antiviral and antigrowth actions of this cytokine. Incubation of cells with either IFNgamma or oncostatin M (OSM) activates Raf-1, a serine/threonine kinase responsible for the ultimate activation of p42 MAPK. To examine whether any of the signaling components that are required for activation of the Jak/Stat pathway are also necessary for activation of Raf-1 by IFNs and OSM, we examined activation of Raf-1 in cell lines that are deficient in either Stat1alpha or Stat2. Unexpectedly, incubation of Stat1-deficient, but not Stat2-deficient cells with IFNgamma or OSM for 5 min displayed no increase in Raf-1 activity. In peripheral blood lymphocytes Raf-1 was associated with Stat1, and this interaction was disrupted after incubation of cells with IFNgamma. Stat1-negative cells reconstituted with either Stat1alpha or Stat1alpha with a point mutation in the site where it is serine-phosphorylated displayed normal activation of Raf-1 by IFNgamma and OSM. However, activation of Raf-1 was not observed in lines that expressed Stat1alpha containing a mutation in its tyrosine phosphorylation site or in its SH2 domain. These results provide the first example of a novel role of Stat1alpha not as a transcription factor, but as a protein which may function to scaffold signaling components required for activation of the distinct Raf/MEK/MAPK signaling cascade.
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PMID:Activation of Raf-1 by interferon gamma and oncostatin M requires expression of the Stat1 transcription factor. 966 40

In the CNS, astrocytes are significant sources of RANTES/CCL5 (regulated upon activation, normal T cell expressed and secreted), a CC-chemokine with important biological function. Astrocyte RANTES/CCL5 has been shown to be induced by interleukin-1 (IL-1), with interferon-gamma (IFNgamma) as a primer, but whether type I interferons play any role in the expression of RANTES/CCL5 is not known. In this report, we studied the detailed mechanism of RANTES/CCL5 induction in primary human astrocytes activated with IL-1 and IFNbeta. Ribonuclease protection assay and ELISA showed that IFNbeta, although not effective alone, increased IL-1-induced RANTES/CCL5 expression, but did not antagonize IFNgamma. IL-1 or IL-1/IFNbeta-induced RANTES/CCL5 expression was inhibited by the super-repressor IkappaBalpha or inhibitors of p38 or c-Jun N-terminal kinase (JNK) MAPKs (mitogen-activated protein kinases), but not by extracellular signal regulated kinases (ERK) inhibitors. IFNbeta enhanced IL-1-induced phosphorylation of p38 MAPK, but was not effective alone. Transfection with mutated RANTES/CCL5 promoter-reporter constructs revealed that kappaB, interferon-stimulated response element (ISRE) and CAATT-enhancer binding protein-beta (C/EBPbeta) sites all contributed to IL-1/IFNbeta-induced RANTES/CCL5 transcription. IFNbeta synergized with IL-1 to induce nuclear accumulation of C/EBPbeta protein. They also synergized to form nuclear ISRE complexes with Stat1, Stat2 and interferon regulatory factor-1 (IRF-1) proteins. Together, our results demonstrate that IFNbeta plays a positive regulatory role in the expression of RANTES/CCL5 in human astrocytes through several distinct mechanisms.
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PMID:Regulation of RANTES/CCL5 expression in human astrocytes by interleukin-1 and interferon-beta. 1522 86