
Synthetic peptides as model substrates for the study of the specificity of the polycation‐stimulated protein phosphatases
Author(s) -
AGOSTINIS Patrizia,
GORIS Jozef,
PINNA Lorenzo A.,
MARCHIORI Fernando,
PERICH John W.,
MEYER Helmut E.,
MERLEVEDE Wilfried
Publication year - 1990
Publication title -
european journal of biochemistry
Language(s) - English
Resource type - Journals
eISSN - 1432-1033
pISSN - 0014-2956
DOI - 10.1111/j.1432-1033.1990.tb15482.x
Subject(s) - phosphatase , chemistry , biochemistry , computational biology , phosphorylation , biology
The substrate specificity of the different forms of the polycation‐stimulated (PCS, type 2A) protein phosphatases and of the active catalytic subunit of the ATP, Mg‐dependent (type 1) phosphatase (AMD c ) was investigated, using synthetic peptides phosphorylated by either cyclic‐AMP‐dependent protein kinase or by casein kinase‐2. The PCS phosphatases are very efficient toward the Thr( P ) peptides RRAT( P )VA and RRREEET( P )EEE when compared with the Ser( P ) analogues RRAS( P )VA and RRREEES( P )EEEAA. Despite their distinct sequence, both Thr( P ) peptides are excellent substrates for the PCS M and PCS H1 Phosphatases, being dephosphorylated faster than phosphorylase a . The slow dephosphorylation of RRAS( P )VA by the PCS phosphatases could be increased substantially by the insertion of N‐terminal (Arg) basic residues. In contrast with the latter, the AMD c phosphatase shows very poor activity toward all the phosphopeptides tested, without preference for either Ser( P ) or Thr( P ) peptides. However, N‐terminal basic residues also favor the dephosphorylation of otherwise almost inert substrates by the AMD c phosphatase. Hence, while the dephosphorylation of Thr( P ) substrates by the PCS phosphatases is highly favored by the nature of the phosphorylated amino acid, phosphatase activity toward Ser( P )‐containing peptides may require specific determinants in the primary structure of the phosphorylation site.