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Determinants for substrate phosphorylation by p21-activated protein kinase (gamma-PAK)

P T Tuazon1, W C Spanos, E L Gump

  • 1Department of Biochemistry, University of California at Riverside, Riverside, California 92521, USA.

Biochemistry
|January 24, 1998
PubMed

Insights

p21-activated protein kinase gamma-PAK has specific substrate requirements for phosphorylation. Its recognition sequence is (K/R)RXS, with basic amino acids at -2 and -3 positions enhancing kinase activity.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Cell Biology

Background:

  • gamma-PAK (p21-activated protein kinase I) exhibits cytostatic properties and maintains cells in a nondividing state.
  • Understanding substrate specificity is crucial for studying protein kinase function and regulation.

Purpose of the Study:

  • To identify the substrate recognition sequence for gamma-PAK phosphorylation.
  • To compare gamma-PAK substrate requirements with those of other related kinases like PKA and PKC.

Main Methods:

  • Phosphorylation kinetics of synthetic peptides mimicking the Rous sarcoma virus NC protein phosphorylation site (KKRKSGL) were analyzed.
  • Peptide sequences were systematically altered to determine the impact of specific amino acid residues on gamma-PAK phosphorylation rates.

Main Results:

  • The gamma-PAK recognition sequence was determined to be (K/R)RXS, requiring basic amino acids (lysine or arginine) at the -3 and -2 positions, respectively.
  • Basic amino acids at the -1 or -4 positions increased phosphorylation rates (Vmax and Km).
  • Acidic residues at -1 or -4 positions enhanced phosphorylation (2.5-fold and 1.6-fold, respectively), while proline at -1 or +1 inhibited it.

Conclusions:

  • gamma-PAK exhibits distinct substrate specificity, favoring basic residues N-terminal to the phosphorylation site.
  • The identified sequence and requirements differentiate gamma-PAK from PKA and PKC, enabling substrate identification using peptides like KRES.

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