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Characterization of site-specific mutants altered at protein kinase C beta 1 isozyme autophosphorylation sites
1Molecular Pharmacology Section, Schering-Plough Research Institute, Kenilworth, NJ 07033-0539.
Abstract:
The autophosphorylation sites of the beta 2 isozyme of protein kinase C (PKC) were recently identified as Ser-16/Thr-17 near the NH2 terminus, Thr-314/Thr-324 in the hinge region, and Thr-634/Thr-641 near the COOH terminus [Flint, A.J., Paladini, R.D. & Koshland, D.E. (1990) Science 294, 408-411]. To define the role of autophosphorylation we constructed three site-directed mutants of PKC beta 1 isozyme in which each pair of phosphorylatable residues is changed to alanine. Wild-type PKC beta 1 and the mutant proteins were transiently overexpressed in COS cells, resulting in at least a 20-fold increase in [3H]phorbol 12,13-dibutyrate binding compared with control transfectants. Enzyme assays of PKC partially purified from transfected cells indicated at least a 5-fold increase in PKC activity upon expression of the wild-type protein or the NH2-terminal and hinge mutants. In contrast, no increased activity was detected upon expression of the COOH-terminal mutant. Immunoblot analysis using a beta isoform-specific antibody showed that wild-type, NH2-terminal mutant, and hinge mutant proteins are similarly distributed between the Triton-soluble and insoluble fractions. In contrast, the COOH-terminal mutant protein is largely Triton-insoluble. Immunoblot analysis also indicated that this mutant is resistant to down-regulation upon chronic exposure of cells to phorbol ester. Moreover, RNA blot analysis showed that overexpression of wild-type PKC but not of the COOH-terminal mutant enhances phorbol ester induction of c-FOS and c-JUN mRNA. Our results indicate that (i) alteration in the NH2-terminal and hinge autophosphorylation sites has no effect on PKC function by the criteria examined and (ii) the COOH-terminal autophosphorylation sites are critical for PKC function and possibly subcellular localization in COS cells.
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.