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Query: EC:2.7.10.1 (
ERK
)
95,504
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
The present study revealed that the pineal gland expressed basic fibroblast growth factor (bFGF) and FGF-receptor 1 (
FGFR1
/flg), suggesting that bFGF in the pineal gland acts in an autocrine or paracrine manner, which is mediated by
FGFR1
/flg. The present study also examined gene expression of the
extracellular signal-regulated kinase
(
ERK
) family (
ERK1
-3) which may be intracellular signal mediators of growth factors.
ERK1
[
mitogen-activated protein kinase
(MAP-kinase)] was strongly expressed throughout the pineal gland, while expression of
ERK2
and ERK3 was not found. These findings suggest the presence of a signal pathway from bFGF to
ERK1
via
FGFR1
/flg in the pineal gland.
...
PMID:Growth factors and extracellular signal-regulated kinases (mitogen-activated protein kinase) in the rat pineal gland. 812 4
Mitogen-activated protein (MAP) kinases have been proposed to play a critical role in receptor tyrosine kinase (RTK)-mediated signal transduction pathways. Although genetic and biochemical studies of RTK pathways in Caenorhabditis elegans, Drosophila melanogaster and mammals have revealed remarkable similarities, a genetic requirement for MAP kinases in RTK signaling has not been established. During retinal development in Drosophila, the sevenless (Sev) RTK is required for development of the R7 photoreceptor cell. Components of the signal transduction pathway activated by Sev in the R7 precursor include proteins encoded by the gap1, drk, Sos, ras1 and raf loci. In this report we present evidence that a Drosophila
MAP kinase
,
ERK
-A, is encoded by the rolled locus and is required downstream of raf in the Sev signal transduction pathway.
...
PMID:The Drosophila rolled locus encodes a MAP kinase required in the sevenless signal transduction pathway. 815 2
The mitogen-activated protein (MAP) kinases are serine-threonine protein kinases that are activated by tyrosine and threonine phosphorylation by the dual specificity protein kinase MEK (
MAP kinase
/
ERK
kinase). The present report describes the purification to near homogeneity and characterization of a protein tyrosine phosphatase from Xenopus laevis eggs that dephosphorylates
MAP kinase
phosphorylated by MEK. Bacterially expressed Xenopus
MAP kinase
phosphorylated by purified Xenopus MEK was used as substrate throughout the purification. The purification procedure included anion-exchange, cation-exchange, gel filtration, heparin-Sepharose, and chromatography on a column of thiophosphorylated
MAP kinase
-Sepharose, resulting in a > 3000-fold purification. Upon analysis by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, a protein of 47 kDa correlated with activity. The phosphatase showed absolute specificity toward phosphotyrosine and no activity toward phosphothreonyl-phosphoseryl residues of
MAP kinase
. The pH optimum of the enzyme was 7.0 with a Km of 9.0 microM for phosphorylated
MAP kinase
. The phosphatase was inhibited by ammonium molybdate (IC50, 2 microM), vanadate (IC50, 250 microM), millimolar concentrations of MnCl2, ZnCl2 and p-nitrophenylphosphate but not by okadaic acid or microcystin. This tyrosine phosphatase may be involved in deactivating
MAP kinase
in vivo.
...
PMID:Purification and characterization of a mitogen-activated protein kinase tyrosine phosphatase from Xenopus eggs. 822 71
Interaction with SV40 small tumor antigen (small t) compromised the ability of multimeric protein phosphatase 2A to inactivate the
mitogen-activated protein kinase
ERK1
and the mitogen-activated protein kinase kinase MEK1. Transient expression of small t in CV-1 cells activated MEK and
ERK
but did not affect Raf activity. Small t stimulated the growth of quiescent CV-1 cells almost as effectively as did serum. Coexpression of kinase-deficient
ERK2
blocked most, but not all, of the proliferation caused by small t. Activation of the
mitogen-activated protein kinase
pathway and stimulation of cell growth were dependent on the interaction of small t with protein phosphatase 2A. These findings indicate that SV40 small t is capable of inducing cell growth through blockade of protein phosphatase and deregulation of the
mitogen-activated protein kinase
cascade.
...
PMID:The interaction of SV40 small tumor antigen with protein phosphatase 2A stimulates the map kinase pathway and induces cell proliferation. 825 25
RCR cells are NRK clones in which Raf-1 production is blocked by the expression of an antisense RNA, and consequently they are refractory to transformation by various oncogenes. In RCR cells, MAP kinases (
ERK1
and
ERK2
) were activated to an extent and in a time course similar to those of the original NRK cells, irrespective of whether the stimulus was oncogenic or non-oncogenic. Moreover, there was no significant elevation of
ERK
activities in oncogene-transformed NRK cells. These results indicate that Raf-1 kinase is not the major upstream activator of
ERK
's in NRK cells and that neither
ERK1
nor
ERK2
are likely to mediate oncogenic signals from Raf-1 kinase.
...
PMID:Raf-1 is not a major upstream regulator of MAP kinases in rat fibroblasts. 826 40
The
Elk
-1 and SRF transcription factors form a ternary complex at the c-fos serum response element (SRE). Growth factor stimulation rapidly induces a reversible change in the electrophoretic mobility of the ternary complex, accompanied by increased phosphorylation of the
Elk
-1 C-terminal region and by the activation of a 42 kd cellular
Elk
-1 kinase. Phosphorylation of
Elk
-1 in vitro by partially purified p42/p44
MAP kinase
induces a similar reduction in ternary complex mobility but has little effect on the efficiency of its formation. In vitro,
MAP kinase
phosphorylates the
Elk
-1 C-terminal region at multiple sites, which are also phosphorylated following growth factor stimulation in vivo. The
Elk
-1 C-terminal region functions as a regulated transcriptional activation domain whose activity in vivo is dependent on the integrity of the
MAP kinase
sites. These findings directly link transcriptional activation by the SRE to the growth factor-regulated phosphorylation of an SRE-binding protein.
...
PMID:The SRF accessory protein Elk-1 contains a growth factor-regulated transcriptional activation domain. 838 92
Mutant epidermal growth factor (EGF) receptors in which the five known tyrosine autophosphorylation sites (tyrosines 992, 1068, 1086, 1148, and 1173) were replaced with phenylalanine residues were expressed in NIH-3T3 cells (5F-EGFR) and transmembrane signaling parameters compared with cells expressing wild-type EGF receptor (WT-EGFR). Mutant and wild-type clones were chosen expressing similar numbers of receptors and Scatchard analysis of 125I-EGF binding showed high and low affinity binding of equal affinities for both receptor types. EGF stimulated tyrosine phosphorylation of proteins to a much lesser degree in cells expressing 5F-
EGFR
relative to cells expressing WT-
EGFR
. Tyrosine phosphorylation of the 5F-
EGFR
was 2-4% of WT-
EGFR
. Surprisingly, cells expressing WT-
EGFR
or 5F-
EGFR
showed little difference in dose response of EGF-stimulated [3H]thymidine incorporation or EGF stimulation of
mitogen-activated protein kinase
activity. However, EGF did not induce anchorage-independent growth of cells expressing 5F-
EGFR
to the same extent as it did for cells expressing WT-
EGFR
. EGF treatment of 5F-
EGFR
cells failed to elicit an increase in phosphatidylinositol 3-kinase activity or to stimulate hydrolysis of phosphoinositides or tyrosine phosphorylation of phospholipase C-gamma 1. These data suggest that a significant proportion of EGF receptor signaling can occur through receptors with altered capacity to interact with src homology 2 domain-containing proteins.
...
PMID:Transmembrane signaling by epidermal growth factor receptors lacking autophosphorylation sites. 838 84
Raf-1 is a serine/threonine kinase which is essential in cell growth and differentiation. Tyrosine kinase oncogenes and receptors and p21ras can activate Raf-1, and recent studies have suggested that Raf-1 functions upstream of MEK (MAP/
ERK
kinase), which phosphorylates and activates
ERK
. To determine whether or not Raf-1 directly activates MEK, we developed an in vitro assay with purified recombinant proteins. Epitope-tagged versions of Raf-1 and MEK and kinase-inactive mutants of each protein were expressed in Sf9 cells, and
ERK1
was purified as a glutathione S-transferase fusion protein from bacteria. Raf-1 purified from Sf9 cells which had been coinfected with v-src or v-ras was able to phosphorylate kinase-active and kinase-inactive MEK. A kinase-inactive version of Raf-1 purified from cells that had been coinfected with v-src or v-ras was not able to phosphorylate MEK. Raf-1 phosphorylation of MEK activated it, as judged by its ability to stimulate the phosphorylation of myelin basic protein by glutathione S-transferase-
ERK1
. We conclude that MEK is a direct substrate of Raf-1 and that the activation of MEK by Raf-1 is due to phosphorylation by Raf-1, which is sufficient for MEK activation. We also tested the ability of protein kinase C to activate Raf-1 and found that, although protein kinase C phosphorylation of Raf-1 was able to stimulate its autokinase activity, it did not stimulate its ability to phosphorylate MEK.
...
PMID:Reconstitution of the Raf-1-MEK-ERK signal transduction pathway in vitro. 841 57
Alteration of the TAL1 gene is the most common genetic lesion found in T-cell acute lymphoblastic leukemia. TAL1 encodes phosphoproteins, pp42TAL1 and pp22TAL1, that represent phosphorylated versions of the full-length (residues 1 to 331) and truncated (residues 176 to 331) TAL1 gene products, respectively. Both proteins contain the basic helix-loop-helix motif, a DNA-binding and protein dimerization motif common to several known transcriptional regulatory factors. We now report that serine residue 122 (S122) is a major phosphorylation site of pp42TAL1 in leukemic cell lines and transfected COS1 cells. In vivo phosphorylation of S122 is induced by epidermal growth factor with a rapid time course that parallels activation of the
ERK
/MAP2 protein kinases. Moreover, S122 is readily phosphorylated in vitro by the extracellular signal-regulated protein kinase ERK1. These data suggest that TAL1 residue S122 serves as an in vivo substrate for
ERK
/MAP2 kinases such as
ERK1
. Therefore, S122 phosphorylation may provide a mechanism whereby the properties of TAL1 polypeptides can be modulated by extracellular stimuli.
...
PMID:Phosphorylation of the TAL1 oncoprotein by the extracellular-signal-regulated protein kinase ERK1. 842 3
The induction of proliferation and differentiation in cultured mammalian cells is mediated by a cascade of protein phosphorylations. A key enzyme in this signaling pathway is mitogen-activated protein (MAP) kinase (or
ERK
,
extracellular signal-regulated kinase
). We report the recovery of a full-length cDNA clone encoding a
MAP kinase
from alfalfa. We have named the 44-kD protein encoded by this clone MsERK1. Recombinant MsERK1 (rMsERK1), when overexpressed in Escherichia coli, is recognized by antibodies raised against MAP kinases from rat, Xenopus, and sea star and by anti-phosphotyrosine antibodies. Site-directed mutagenesis of MsERK1 demonstrated that Tyr-215 is either directly or indirectly responsible for recognition of the protein by anti-phosphotyrosine antibodies. Semipurified rMsERK1 phosphorylated itself and a model substrate, myelin basic protein, in vitro, but the Tyr-215 mutant did neither. Genomic DNA gel blot analysis suggested that the gene that encodes MsERK1 is either a member of a small multigene family or a member of a polymorphic allelic series in alfalfa. Because
MAP kinase
activation has been associated with mitotic stimulation in animal systems, such an enzyme may play a role in the mitogenic induction of symbiotic root nodules on alfalfa by Rhizobium signal molecules.
...
PMID:MsERK1: a mitogen-activated protein kinase from a flowering plant. 843 46
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