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PMID: 19996458 Published · epublish English Journal Article Research Support, N.I.H., Extramural Review

Cracking the phosphatase code: docking interactions determine substrate specificity.

Science signaling ·Vol. 2 ·No. 100 ·2009-12-08 ·Pages re9

Roy J, Cyert MS

Abstract

Phosphoserine- and phosphothreonine-directed phosphatases display remarkable substrate specificity, yet the sites that they dephosphorylate show little similarity in amino acid sequence. Studies reveal that docking interactions are key for the recognition of substrates and regulators by two conserved phosphatases, protein phosphatase 1 (PP1) and the Ca2+-calmodulin-dependent phosphatase calcineurin. In each case, a small degenerate sequence motif in the interacting protein directs low-affinity binding to a docking surface on the phosphatase that is distinct from the active site; several such interactions combine to confer overall binding specificity. Some docking surfaces are conserved, such as a hydrophobic groove on a face opposite the active site that serves as a major recognition surface for the "RVxF" motif of proteins that interact with PP1 and the "PxIxIT" motif of substrates of calcineurin. Secondary motifs combine with this primary targeting sequence to specify phosphatase binding. A comprehensive interactome for mammalian PP1 was described, analysis of which defines several PP1-binding motifs. Studies of "LxVP," a secondary calcineurin-binding sequence, establish that this motif is a conserved feature of calcineurin substrates and that the immunosuppressants FK506 and cyclosporin A inhibit the phosphatase by interfering with LxVP-mediated docking.

MeSH Terms
Amino Acid Motifs Models, Molecular Phosphoric Monoester Hydrolases/chemistry,metabolism Substrate Specificity
Chemicals
Phosphoric Monoester Hydrolases
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Roy Jagoree
Department of Biology, Stanford University, 371 Serra Mall, Stanford, CA 94305-5020, USA.
Cyert Martha S
Article Info
Journal
Science signaling
Abbr.
Sci Signal
ISSN
1937-9145
Published
2009-12-08
Epub
2009-00-08
Pages
re9
Language
English
Region
United States
NLM ID
101465400
Subset
IM
Grants
NIGMS NIH HHS · R01 GM048729 · United States
NIGMS NIH HHS · GM-48728 · United States
Analysis Services
Analysis Services

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