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The Last 10 Amino Acid Residues beyond the Hydrophobic Motif Are Critical for the Catalytic Competence and Function of Protein Kinase CÎ
The segment C-terminal to the hydrophobic motif at the V5 domain of protein kinase C (PKC) is the least conserved both in length and in amino acid identity among all PKC isozymes. By generating serial truncation mutants followed by biochemical and functional analyses, we show here that the very C te...
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Published in: | The Journal of biological chemistry 2006-10, Vol.281 (41), p.30768 |
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Main Authors: | , , , , , , , , , , , , |
Format: | Article |
Language: | English |
Online Access: | Get full text |
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Summary: | The segment C-terminal to the hydrophobic motif at the V5 domain of protein kinase C (PKC) is the least conserved both in
length and in amino acid identity among all PKC isozymes. By generating serial truncation mutants followed by biochemical
and functional analyses, we show here that the very C terminus of PKCα is critical in conferring the full catalytic competence
to the kinase and for transducing signals in cells. Deletion of one C-terminal amino acid residue caused the loss of â¼60%
of the catalytic activity of the mutant PKCα, whereas deletion of 10 C-terminal amino acid residues abrogated the catalytic
activity of PKCα in immune complex kinase assays. The PKCα C-terminal truncation mutants were found to lose their ability
to activate mitogen-activated protein kinase, to rescue apoptosis induced by the inhibition of endogenous PKC in COS cells,
and to augment melatonin-stimulated neurite outgrowth. Furthermore, molecular dynamics simulations revealed that the deletion
of 1 or 10 C-terminal residues results in the deformation of the V5 domain and the ATP-binding pocket, respectively. Finally,
PKCα immunoprecipitated using an antibody against its C terminus had only marginal catalytic activity compared with that of
the PKCα immunoprecipitated by an antibody against its N terminus. Therefore, the very C-terminal tail of PKCα is a novel
determinant of the catalytic activity of PKC and a promising target for selective modulation of PKCα function. Molecules that
bind preferentially to the very C terminus of distinct PKC isozymes and suppress their catalytic activity may constitute a
new class of selective inhibitors of PKC. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.M511278200 |