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A novel phosphatase family, structurally related to dual-specificity phosphatases, that displays unique amino acid sequence and substrate specificity
Authors:Romá-Mateo Carlos  Ríos Pablo  Tabernero Lydia  Attwood Teresa K  Pulido Rafael
Institution:1 Centro de Investigación Príncipe Felipe, Avenida Autopista del Saler, 16-3, 46013 Valencia, Spain
2 Faculty of Life Sciences, University of Manchester, M13 9PT Manchester, UK
3 School of Computer Science, University of Manchester, M13 9PT Manchester, UK
Abstract:Members of the superfamily of protein tyrosine phosphatases (PTPs) share the presence of an evolutionarily conserved PTP catalytic domain. Among them, the dual-specificity phosphatases (DSPs) constitute a diverse group of enzymes in terms of substrate specificity, including nonprotein substrates. In recent years, an increasing number of novel DSPs, whose functions and biological substrates are not well defined, have been discovered in a variety of organisms. In this study, we define the structural and functional properties of evolutionarily related atypical DSPs from different phyla. Sets of conserved motifs were defined that (i) uniquely segregated mammalian atypical DSPs from closely related enzymes and (ii) exclusively characterised a novel family of atypical DSPs present in plants, fungi, and kinetoplastids plant and fungi atypical (PFA)-DSPs]; despite having different sequence “fingerprints,” the PTP tertiary structure of PFA-DSPs is conserved. Analysis of the catalytic properties of PFA-DSPs suggests the existence of a unique substrate specificity for these enzymes. Our findings predict characteristic functional motifs for the diverse members of the DSP families of PTPs and provide insights into the functional properties of DSPs of unknown function.
Keywords:PTP  protein tyrosine phosphatase  DSP  dual-specificity phosphatase  MAP  mitogen-activated protein  MKP  MAP kinase phosphatase  MAPK  MAP kinase  PTEN  phosphatase and tensin homologue deleted in chromosome TEN
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