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Characterization of site-specific mutants altered at protein kinase C beta 1 isozyme autophosphorylation sites

J Zhang1, L Wang, J Petrin

  • 1Molecular Pharmacology Section, Schering-Plough Research Institute, Kenilworth, NJ 07033-0539.

Insights

Autophosphorylation of protein kinase C (PKC) beta 1 isozyme is crucial for its function. COOH-terminal sites are critical for PKC activity, localization, and gene induction, while NH2-terminal and hinge sites have no significant impact.

Area of Science:

  • Molecular Biology
  • Cell Signaling
  • Enzymology

Background:

  • Protein Kinase C (PKC) isozymes play vital roles in cellular signaling pathways.
  • Autophosphorylation is a key regulatory mechanism for kinase activity.
  • Specific autophosphorylation sites on PKC beta 1 isozyme were previously identified.

Purpose of the Study:

  • To investigate the functional significance of identified autophosphorylation sites on PKC beta 1 isozyme.
  • To determine the role of specific autophosphorylation sites in PKC activity, localization, and gene regulation.

Main Methods:

  • Site-directed mutagenesis was used to create PKC beta 1 mutants lacking specific autophosphorylation sites.
  • Mutant and wild-type PKC beta 1 were overexpressed in COS cells.
  • PKC activity, subcellular localization, and gene induction (c-FOS, c-JUN) were assessed.

Main Results:

  • PKC beta 1 activity increased upon expression of wild-type and NH2-terminal/hinge mutants, but not the COOH-terminal mutant.
  • The COOH-terminal mutant exhibited altered subcellular localization (Triton-insoluble) and resistance to down-regulation.
  • Overexpression of wild-type PKC, but not the COOH-terminal mutant, enhanced phorbol ester induction of c-FOS and c-JUN mRNA.

Conclusions:

  • Autophosphorylation at COOH-terminal sites is essential for PKC beta 1 function, including its activity, subcellular localization, and regulation of gene expression.
  • Autophosphorylation at NH2-terminal and hinge sites does not significantly affect PKC beta 1 function as assessed by the criteria used.

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