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Query: EC:2.7.11.1 (
protein kinase
)
81,284
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Apoptosis plays an important role during neuronal development, and defects in apoptosis may underlie various neurodegenerative disorders. To characterize molecular mechanisms that regulate neuronal apoptosis, the contributions to cell death of mitogen-activated protein (MAP) kinase family members, including ERK (extracellular signal-regulated kinase), JNK (c-JUN NH2-terminal
protein kinase
), and
p38
, were examined after withdrawal of nerve growth factor (NGF) from rat PC-12 pheochromocytoma cells. NGF withdrawal led to sustained activation of the JNK and
p38
enzymes and inhibition of ERKs. The effects of dominant-interfering or constitutively activated forms of various components of the JNK-
p38
and ERK signaling pathways demonstrated that activation of JNK and
p38
and concurrent inhibition of ERK are critical for induction of apoptosis in these cells. Therefore, the dynamic balance between growth factor-activated ERK and stress-activated JNK-
p38
pathways may be important in determining whether a cell survives or undergoes apoptosis.
...
PMID:Opposing effects of ERK and JNK-p38 MAP kinases on apoptosis. 748 20
In human platelets a proline-directed kinase distinct from the ERK MAP kinases is stimulated by both thrombin and the thrombin receptor agonist peptide SFLLRN and may be involved in the activation of Ca(2+)-dependent cytosolic phospholipase A2 (Kramer, R. M., Roberts, E. F., Hyslop, P. A., Utterback, B. G., Hui, K. Y., and Jakubowski, J.A. (1995) J. Biol. Chem. 270, 14816-14823). Here we show that this kinase is identical with or closely related to
p38
(the mammalian homolog of HOG1 from yeast), a recently discovered
protein kinase
typically activated by inflammatory cytokines and environmental stress. Further, we demonstrate that activation of this kinase by thrombin is transient (with maximal stimulation at 1 min), is accompanied by tyrosine phosphorylation, and precedes the activation of the ERK kinases. This is the first report to show that
p38
kinase is activated by thrombin and to suggest a role for this MAP kinase in the thrombin-mediated signaling events during platelet activation.
...
PMID:Thrombin induces activation of p38 MAP kinase in human platelets. 749 91
The prototype mitogen-activated protein (MAP) kinase module is a three-kinase cascade consisting of the MAP kinase, extracellular signal-regulated
protein kinase
(ERK) 1 or ERK2, the MAP/ERK kinase (MEK) MEK1 or MEK2, and the MEK kinase,
Raf-1
or B-Raf. This and other MAP kinase modules are thought to be critical signal transducers in major cellular events including proliferation, differentiation, and stress responses. To identify novel mammalian MAP kinase modules, polymerase chain reaction was used to isolate a new MEK family member, MEK5, from the rat. MEK5 is more closely related to MEK1 and MEK2 than to the other known mammalian MEKs, MKK3 and MKK4. MEK5 is thought to lie in an uncharacterized MAP kinase pathway, because MEK5 does not phosphorylate the ERK/MAP kinase family members ERK1, ERK2, ERK3, JNK/SAPK, or
p38
/HOG1, nor will
Raf-1
, c-Mos, or MEKK1 highly phosphorylate it. Alternative splicing results in a 50-kDa alpha and a 40-kDa beta isoform of MEK5. MEK5 beta is ubiquitously distributed and primarily cytosolic. MEK5 alpha is expressed most highly in liver and brain and is particulate. The 23 amino acids encoded by the 5' exon in the larger alpha isoform are similar to a sequence found in certain proteins believed to associate with the actin cytoskeleton; this alternatively spliced modular domain may lead to the differential subcellular localization of MEK5 alpha.
...
PMID:Isolation of MEK5 and differential expression of alternatively spliced forms. 749 18
Protein kinases activated by dual phosphorylation on Tyr and Thr (MAP kinases) can be grouped into two major classes: ERK and JNK. The ERK group regulates multiple targets in response to growth factors via a Ras-dependent mechanism. In contrast, JNK activates the transcription factor c-Jun in response to pro-inflammatory cytokines and exposure of cells to several forms of environmental stress. Recently, a novel mammalian
protein kinase
(
p38
) that shares sequence similarity with mitogen-activated protein (MAP) kinases was identified. Here, we demonstrate that
p38
, like JNK, is activated by treatment of cells with pro-inflammatory cytokines and environmental stress. The mechanism of
p38
activation is mediated by dual phosphorylation on Thr-180 and Tyr-182. Immunofluorescence microscopy demonstrated that p38 MAP kinase is present in both the nucleus and cytoplasm of activated cells. Together, these data establish that
p38
is a member of the mammalian MAP kinase group.
...
PMID:Pro-inflammatory cytokines and environmental stress cause p38 mitogen-activated protein kinase activation by dual phosphorylation on tyrosine and threonine. 753 70
The stress-activated
p38
mitogen-activated protein (MAP) kinase defines a subgroup of the mammalian MAP kinases that appear to play a key role in regulating inflammatory responses. Co-expression of constitutively active forms of Rac and Cdc42 leads to activation of
p38
while dominant negative Rac and Cdc42 inhibit the ability of interleukin-1 to increase
p38
activity. p21-activated kinase 1 (Pak1) is a potential mediator of Rac/Cdc42 signaling, and we observe that Pak1 stimulates
p38
activity. A dominant negative Pak1 suppresses both interleukin-1- and Rac/Cdc42-induced
p38
activity. Rac and Cdc42 appear to regulate a
protein kinase
cascade initiated at the level of Pak and leading to activation of
p38
and JNK.
...
PMID:Rho family GTPases regulate p38 mitogen-activated protein kinase through the downstream mediator Pak1. 759 86
One Ras-dependent
protein kinase
cascade leading from growth factor receptors to the ERK (extracellular signal-regulated kinases) subgroup of mitogen-activated protein kinases (MAPKs) is dependent on the
protein kinase
Raf-1
, which activates the MEK (MAPK or ERK kinase) dual specificity kinases. A second
protein kinase
cascade leading to activation of the Jun kinases (JNKs) is dependent on MEKK (MEK kinase). A dual-specificity kinase that activates JNK, named JNKK, was identified that functions between MEKK and JNK. JNKK activated the JNKs but did not activate the ERKs and was unresponsive to
Raf-1
in transfected HeLa cells. JNKK also activated another MAPK,
p38
(Mpk2; the mammalian homolog of HOG1 from yeast), whose activity is regulated similarly to that of the JNKs.
...
PMID:Identification of a dual specificity kinase that activates the Jun kinases and p38-Mpk2. 771 21
Mammalian mitogen-activated protein (MAP) kinases include extracellular signal-regulated
protein kinase
(ERK), c-Jun amino-terminal kinase (JNK), and
p38
subgroups. These MAP kinase isoforms are activated by dual phosphorylation on threonine and tyrosine. Two human MAP kinase kinases (MKK3 and MKK4) were cloned that phosphorylate and activate p38 MAP kinase. These MKK isoforms did not activate the ERK subgroup of MAP kinases, but MKK4 did activate JNK. These data demonstrate that the activators of
p38
(MKK3 and MKK4), JNK (MKK4), and ERK (MEK1 and MEK2) define independent MAP kinase signal transduction pathways.
...
PMID:Independent human MAP-kinase signal transduction pathways defined by MEK and MKK isoforms. 783 44
Mammalian cells respond to endotoxic lipopolysaccharide (LPS) by activation of
protein kinase
cascades that lead to new gene expression. A
protein kinase
,
p38
, that was tyrosine phosphorylated in response to LPS, was cloned. The
p38
enzyme and the product of the Saccharomyces cerevisiae HOG1 gene, which are both members of the mitogen-activated protein (MAP) kinase family, have sequences at and adjacent to critical phosphorylation sites that distinguish these proteins from most other MAP kinase family members. Both HOG1 and
p38
are tyrosine phosphorylated after extracellular changes in osmolarity. These findings link a signaling pathway in mammalian cells with a pathway in yeast that is responsive to physiological stress.
...
PMID:A MAP kinase targeted by endotoxin and hyperosmolarity in mammalian cells. 791 33
Human T lymphocytes possess both the type I and II isozymes of
protein kinase A
(
PKA
). The type I (
PKA
-I) isozyme is predominantly associated with the plasma membrane, whereas the type II (
PKA
-II) isozyme is primarily localized to the cytosol. Because the functions of both
PKA
-I and
PKA
-II isozymes in the biochemical events of T lymphocyte activation have not been clearly elucidated, we tested the hypothesis that very early events of normal human T lymphocyte activation are mediated by the
PKA
-I and/or
PKA
-II isozyme(s). Fresh normal human T cells and a normal human CD4+ T cell line (GK606) activated with anti-CD3-epsilon and recombinant interleukin 1 alpha (rIL-1 alpha) exhibited a peak six- to sevenfold increase of
PKA
phosphotransferase activity at 5 min that returned to baseline by 60 min. Similarly, both fresh T cells and the T cell line activated by phorbol myristate acetate and ionomycin demonstrated a peak eightfold increase of
PKA
activity by 15 min that returned toward baseline by 60 min. Chromatographic separation of the
PKA
isozymes and quantification of phosphotransferase activities after T cell activation by either agonist pair showed preferential activation of the
PKA
-I isozyme, resulting in a significant reduction in the ratio of
PKA
-I to
PKA
-II isozyme activity from 3.1:1-6.2:1 to 1.1:1-3.2:1.
PKA
-I isozyme activation resulted in the release of free catalytic (C) subunit, an increase in C subunit phosphotransferase activity, and the phosphorylation of T cell plasma membrane-associated proteins, p14, p17, p20, p21,
p38
, and p48. However, activation of the
PKA
-I isozyme did not appear to be required for the transcription of IL-2 mRNA, an event necessary for mitosis. These data indicate that ligand-induced T cell activation is associated with rapid activation of the
PKA
-I, but not
PKA
-II, isozyme that results in phosphorylation of plasma membrane-associated proteins. The involvement of the
PKA
-I isozyme during the very early events of T cell activation suggests that this isozyme may be an antigen- or mitogen-stimulated
protein kinase
.
...
PMID:Early events of human T lymphocyte activation are associated with type I protein kinase A activity. 822 35
A new member of the mitogen-activated protein kinase family, alternatively termed CSBP,
p38
, or RK, has been identified independently by several laboratories recently. Activation of this novel
protein kinase
via dual phosphorylation has been observed in different cell systems upon stimulation by a wide spectrum of stimuli, such as physicochemical stress and treatment with lipopolysaccharide or proinflammatory cytokines such as interleukin-1 and tumor necrosis factor. Furthermore, CSAID cytokine biosynthesis inhibitors have now been determined to be potent and selective inhibitors of CSBP/
p38
/RK kinase activity. These inhibitors will help to dissect signaling pathways involved in inflammatory responses. In particular, for the first time a definitive signal transduction pathway can be prescribed to the action of lipopolysaccharide in cytokine production in macrophages.
...
PMID:Role of CSB/p38/RK stress response kinase in LPS and cytokine signaling mechanisms. 860 87
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