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Differential regulation of the MAP, SAP and RK/p38 kinases by Pyst1, a novel cytosolic dual-specificity phosphatase.
Groom LA, Sneddon AA, Alessi DR, Dowd S, Keyse SM.
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The Pyst1 and Pyst2 mRNAs encode closely related proteins, which are novel members of a family of dual-specificity MAP kinase phosphatases typified by CL100/MKP-1. Pyst1 is expressed constitutively in human skin fibroblasts and, in contrast to other members of this family of enzymes, its mRNA is not inducible by either stress or mitogens. Furthermore, unlike the nuclear CL100 protein, Pyst1 is localized in the cytoplasm of transfected Cos-1 cells. Like CL100/ MKP-1, Pyst1 dephosphorylates and inactivates MAP kinase in vitro and in vivo. In addition, Pyst1 is able to form a physical complex with endogenous MAP kinase in Cos-1 cells. However, unlike CL100, Pyst1 displays very low activity towards the stress-activated protein kinases (SAPKs) or RK/p38 in vitro, indicating that these kinases are not physiological substrates for Pyst1. This specificity is underlined by the inability of Pyst1 to block either the stress-mediated activation of the JNK-1 SAP kinase or RK/p38 in vivo, or to inhibit nuclear signalling events mediated by the SAP kinases in response to UV radiation. Our results provide the first evidence that the members of the MAP kinase family of enzymes are differentially regulated by dual-specificity phosphatases and also indicate that the MAP kinases may be regulated by different members of this family of enzymes depending on their subcellular location.
Adams,
Rapid cDNA sequencing (expressed sequence tags) from a directionally cloned human infant brain cDNA library.
1993, Pubmed
Adams,
Rapid cDNA sequencing (expressed sequence tags) from a directionally cloned human infant brain cDNA library.
1993,
Pubmed Alessi,
Identification of the sites in MAP kinase kinase-1 phosphorylated by p74raf-1.
1994,
Pubmed Alessi,
The human CL100 gene encodes a Tyr/Thr-protein phosphatase which potently and specifically inactivates MAP kinase and suppresses its activation by oncogenic ras in Xenopus oocyte extracts.
1993,
Pubmed
,
Xenbase Alessi,
Inactivation of p42 MAP kinase by protein phosphatase 2A and a protein tyrosine phosphatase, but not CL100, in various cell lines.
1995,
Pubmed Anderson,
Requirement for integration of signals from two distinct phosphorylation pathways for activation of MAP kinase.
1990,
Pubmed Charles,
cDNA sequence of a growth factor-inducible immediate early gene and characterization of its encoded protein.
1992,
Pubmed Chen,
Nuclear localization and regulation of erk- and rsk-encoded protein kinases.
1992,
Pubmed Cobb,
The mitogen-activated protein kinases, ERK1 and ERK2.
1994,
Pubmed Davis,
The mitogen-activated protein kinase signal transduction pathway.
1993,
Pubmed Dérijard,
Independent human MAP-kinase signal transduction pathways defined by MEK and MKK isoforms.
1995,
Pubmed Dérijard,
JNK1: a protein kinase stimulated by UV light and Ha-Ras that binds and phosphorylates the c-Jun activation domain.
1994,
Pubmed Doi,
MSG5, a novel protein phosphatase promotes adaptation to pheromone response in S. cerevisiae.
1994,
Pubmed Feinberg,
"A technique for radiolabeling DNA restriction endonuclease fragments to high specific activity". Addendum.
1984,
Pubmed Fischer,
Protein tyrosine phosphatases: a diverse family of intracellular and transmembrane enzymes.
1991,
Pubmed Fitch,
Construction of phylogenetic trees.
1967,
Pubmed Freshney,
Interleukin-1 activates a novel protein kinase cascade that results in the phosphorylation of Hsp27.
1994,
Pubmed Guan,
Isolation and characterization of a novel dual specific phosphatase, HVH2, which selectively dephosphorylates the mitogen-activated protein kinase.
1995,
Pubmed Haring,
Tyrosine phosphatase signalling in a lower plant: cell-cycle and oxidative stress-regulated expression of the Chlamydomonas eugametos VH-PTP13 gene.
1995,
Pubmed Hibi,
Identification of an oncoprotein- and UV-responsive protein kinase that binds and potentiates the c-Jun activation domain.
1993,
Pubmed Howe,
Activation of the MAP kinase pathway by the protein kinase raf.
1992,
Pubmed Ishibashi,
A novel dual specificity phosphatase induced by serum stimulation and heat shock.
1994,
Pubmed Keyse,
Amino acid sequence similarity between CL100, a dual-specificity MAP kinase phosphatase and cdc25.
1993,
Pubmed Keyse,
An emerging family of dual specificity MAP kinase phosphatases.
1995,
Pubmed Keyse,
Oxidative stress and heat shock induce a human gene encoding a protein-tyrosine phosphatase.
1992,
Pubmed Kosako,
Xenopus MAP kinase activator is a serine/threonine/tyrosine kinase activated by threonine phosphorylation.
1992,
Pubmed
,
Xenbase Kwak,
Multiple dual specificity protein tyrosine phosphatases are expressed and regulated differentially in liver cell lines.
1995,
Pubmed Kwak,
Isolation and characterization of a human dual specificity protein-tyrosine phosphatase gene.
1994,
Pubmed Kyriakis,
The stress-activated protein kinase subfamily of c-Jun kinases.
1994,
Pubmed Kyriakis,
Raf-1 activates MAP kinase-kinase.
1992,
Pubmed Lee,
Primary structure of BMK1: a new mammalian map kinase.
1995,
Pubmed Lee,
A protein kinase involved in the regulation of inflammatory cytokine biosynthesis.
,
Pubmed Lenormand,
Growth factors induce nuclear translocation of MAP kinases (p42mapk and p44mapk) but not of their activator MAP kinase kinase (p45mapkk) in fibroblasts.
1993,
Pubmed Lewis,
XCL100, an inducible nuclear MAP kinase phosphatase from Xenopus laevis: its role in MAP kinase inactivation in differentiated cells and its expression during early development.
1995,
Pubmed
,
Xenbase Lin,
Identification of a dual specificity kinase that activates the Jun kinases and p38-Mpk2.
1995,
Pubmed Liu,
Role of mitogen-activated protein kinase phosphatase during the cellular response to genotoxic stress. Inhibition of c-Jun N-terminal kinase activity and AP-1-dependent gene activation.
1995,
Pubmed Livingstone,
ATF-2 contains a phosphorylation-dependent transcriptional activation domain.
1995,
Pubmed Marshall,
MAP kinase kinase kinase, MAP kinase kinase and MAP kinase.
1994,
Pubmed Minden,
Differential activation of ERK and JNK mitogen-activated protein kinases by Raf-1 and MEKK.
1994,
Pubmed Misra-Press,
A novel mitogen-activated protein kinase phosphatase. Structure, expression, and regulation.
1995,
Pubmed Nakielny,
MAP kinase activator from insulin-stimulated skeletal muscle is a protein threonine/tyrosine kinase.
1992,
Pubmed Nebreda,
The c-mos proto-oncogene protein kinase turns on and maintains the activity of MAP kinase, but not MPF, in cell-free extracts of Xenopus oocytes and eggs.
1993,
Pubmed
,
Xenbase Nishida,
The MAP kinase cascade is essential for diverse signal transduction pathways.
1993,
Pubmed
,
Xenbase Piechaczyk,
Post-transcriptional regulation of glyceraldehyde-3-phosphate-dehydrogenase gene expression in rat tissues.
1984,
Pubmed Raingeaud,
Pro-inflammatory cytokines and environmental stress cause p38 mitogen-activated protein kinase activation by dual phosphorylation on tyrosine and threonine.
1995,
Pubmed Rohan,
PAC-1: a mitogen-induced nuclear protein tyrosine phosphatase.
1993,
Pubmed Rouse,
A novel kinase cascade triggered by stress and heat shock that stimulates MAPKAP kinase-2 and phosphorylation of the small heat shock proteins.
1994,
Pubmed
,
Xenbase Ruzzene,
Specificity of T-cell protein tyrosine phosphatase toward phosphorylated synthetic peptides.
1993,
Pubmed Sanger,
DNA sequencing with chain-terminating inhibitors.
1977,
Pubmed Sarcevic,
Purification and characterization of a mitogen-activated protein kinase tyrosine phosphatase from Xenopus eggs.
1993,
Pubmed
,
Xenbase Seger,
The MAPK signaling cascade.
1995,
Pubmed Sun,
MKP-1 (3CH134), an immediate early gene product, is a dual specificity phosphatase that dephosphorylates MAP kinase in vivo.
1993,
Pubmed Sun,
Inhibition of Ras-induced DNA synthesis by expression of the phosphatase MKP-1.
1994,
Pubmed Traverse,
Identification of a latent MAP kinase kinase kinase in PC12 cells as B-raf.
1994,
Pubmed Traverse,
Sustained activation of the mitogen-activated protein (MAP) kinase cascade may be required for differentiation of PC12 cells. Comparison of the effects of nerve growth factor and epidermal growth factor.
1992,
Pubmed Ward,
Control of MAP kinase activation by the mitogen-induced threonine/tyrosine phosphatase PAC1.
1994,
Pubmed Wu,
Rapid deactivation of MAP kinase in PC12 cells occurs independently of induction of phosphatase MKP-1.
1994,
Pubmed Zheng,
Dephosphorylation and inactivation of the mitogen-activated protein kinase by a mitogen-induced Thr/Tyr protein phosphatase.
1993,
Pubmed Zheng,
Activation of MEK family kinases requires phosphorylation of two conserved Ser/Thr residues.
1994,
Pubmed Zhou,
Components of a new human protein kinase signal transduction pathway.
1995,
Pubmed