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PMID: 19228121 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Dual-specificity phosphatases: critical regulators with diverse cellular targets.

The Biochemical journal ·Vol. 418 ·No. 3 ·2009-03-15 ·Pages 475-89

Patterson KI, Brummer T, O'Brien PM, Daly RJ

Abstract

DUSPs (dual-specificity phosphatases) are a heterogeneous group of protein phosphatases that can dephosphorylate both phosphotyrosine and phosphoserine/phosphothreonine residues within the one substrate. DUSPs have been implicated as major modulators of critical signalling pathways that are dysregulated in various diseases. DUSPs can be divided into six subgroups on the basis of sequence similarity that include slingshots, PRLs (phosphatases of regenerating liver), Cdc14 phosphatases (Cdc is cell division cycle), PTENs (phosphatase and tensin homologues deleted on chromosome 10), myotubularins, MKPs (mitogen-activated protein kinase phosphatases) and atypical DUSPs. Of these subgroups, a great deal of research has focused on the characterization of the MKPs. As their name suggests, MKPs dephosphorylate MAPK (mitogen-activated protein kinase) proteins ERK (extracellular-signal-regulated kinase), JNK (c-Jun N-terminal kinase) and p38 with specificity distinct from that of individual MKP proteins. Atypical DUSPs are mostly of low-molecular-mass and lack the N-terminal CH2 (Cdc25 homology 2) domain common to MKPs. The discovery of most atypical DUSPs has occurred in the last 6 years, which has initiated a large amount of interest in their role and regulation. In the past, atypical DUSPs have generally been grouped together with the MKPs and characterized for their role in MAPK signalling cascades. Indeed, some have been shown to dephosphorylate MAPKs. The current literature hints at the potential of the atypical DUSPs as important signalling regulators, but is crowded with conflicting reports. The present review provides an overview of the DUSP family before focusing on atypical DUSPs, emerging as a group of proteins with vastly diverse substrate specificity and function.

MeSH Terms
Animals Cell Cycle Proteins/metabolism Cyclin-Dependent Kinase Inhibitor Proteins/metabolism Dual Specificity Phosphatase 1/metabolism Dual Specificity Phosphatase 3/metabolism Dual-Specificity Phosphatases/classification,metabolism,physiology Humans Membrane Proteins/metabolism Mitogen-Activated Protein Kinase Phosphatases/metabolism PTEN Phosphohydrolase/metabolism Phosphoprotein Phosphatases/metabolism Phosphoric Monoester Hydrolases/metabolism Protein Tyrosine Phosphatases/metabolism Protein Tyrosine Phosphatases, Non-Receptor/metabolism
Chemicals
Cell Cycle Proteins Cyclin-Dependent Kinase Inhibitor Proteins Membrane Proteins DUSP13 protein, human Mitogen-Activated Protein Kinase Phosphatases Phosphoprotein Phosphatases STYXL2 protein, human dual specificity phosphatase 12 slingshot phosphatase 2, human Phosphoric Monoester Hydrolases CDC14A protein, human CDC14B protein, human CDKN3 protein, human DUSP11 protein, human DUSP14 protein, human DUSP18 protein, human DUSP19 protein, human DUSP22 protein, human DUSP23 protein, human DUSP26 protein, human DUSP3 protein, human Dual Specificity Phosphatase 1 Dual Specificity Phosphatase 3 Dual-Specificity Phosphatases PTP4A1 protein, human PTP4A2 protein, human Protein Tyrosine Phosphatases Protein Tyrosine Phosphatases, Non-Receptor EPM2A protein, human PTEN Phosphohydrolase
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Patterson Kate I
Cancer Research Program, Garvan Institute of Medical Research, 384 Victoria Street, Darlinghurst 2010, Sydney, NSW, Australia. k.patterson@garvan.org.au
Brummer Tilman
O'Brien Philippa M
Daly Roger J
Article Info
Journal
The Biochemical journal
Abbr.
Biochem J
ISSN
1470-8728
Published
2009-03-15
Pages
475-89
Language
English
Region
England
NLM ID
2984726R
Subset
IM
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