Protein kinase C-δ regulates the subcellular localization of Shc in H2O2-treated cardiomyocytes
- 1 October 2010
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Cell Physiology
- Vol. 299 (4), C770-C778
- https://doi.org/10.1152/ajpcell.00170.2010
Abstract
Protein kinase C-δ (PKCδ) exerts important cardiac actions as a lipid-regulated kinase. There is limited evidence that PKCδ also might exert an additional kinase-independent action as a regulator of the subcellular compartmentalization of binding partners such as Shc (Src homologous and collagen), a family of adapter proteins that play key roles in growth regulation and oxidative stress responses. This study shows that native PKCδ forms complexes with endogenous Shc proteins in H2O2-treated cardiomyocytes; H2O2 treatment also leads to the accumulation of PKCδ and Shc in a detergent-insoluble cytoskeletal fraction and in mitochondria. H2O2-dependent recruitment of Shc isoforms to cytoskeletal and mitochondrial fractions is amplified by wild-type-PKCδ overexpression, consistent with the notion that PKCδ acts as a signal-regulated scaffold to anchor Shc in specific subcellular compartments. However, overexpression studies with kinase-dead (KD)-PKCδ-K376R (an ATP-binding mutant of PKCδ that lacks catalytic activity) are less informative, since KD-PKCδ-K376R aberrantly localizes as a constitutively tyrosine-phosphorylated enzyme to detergent-insoluble and mitochondrial fractions of resting cardiomyocytes; relatively little KD-PKCδ-K376R remains in the cytosolic fraction. The aberrant localization and tyrosine phosphorylation patterns for KD-PKCδ-K376R do not phenocopy the properties of native PKCδ, even in cells chronically treated with GF109203X to inhibit PKCδ activity. Hence, while KD-PKCδ-K376R overexpression increases Shc localization to the detergent-insoluble and mitochondrial fractions, the significance of these results is uncertain. Our studies suggest that experiments using KD-PKCδ-K376R overexpression as a strategy to competitively inhibit the kinase-dependent actions of native PKCδ or to expose the kinase-independent scaffolding functions of PKCδ should be interpreted with caution.Keywords
This publication has 36 references indexed in Scilit:
- Interaction with AKAP79 Modifies the Cellular Pharmacology of PKCMolecular Cell, 2010
- Inhibitor hijacking of Akt activationNature Chemical Biology, 2009
- p66Shc Links α 1 -Adrenergic Receptors to a Reactive Oxygen Species-Dependent AKT-FOXO3A Phosphorylation Pathway in CardiomyocytesCirculation Research, 2009
- Structural Basis of Protein Kinase C Isoform FunctionPhysiological Reviews, 2008
- Tyrosine Phosphorylation Modifies Protein Kinase C δ-dependent Phosphorylation of Cardiac Troponin IPublished by Elsevier ,2008
- Phorbol 12-Myristate 13-Acetate-dependent Protein Kinase Cδ-Tyr311 Phosphorylation in Cardiomyocyte CaveolaeJournal of Biological Chemistry, 2008
- Protein Kinase D Links Gq-coupled Receptors to cAMP Response Element-binding Protein (CREB)-Ser133 Phosphorylation in the HeartPublished by Elsevier ,2008
- Novel Role of Protein Kinase C-δ Tyr 311 Phosphorylation in Vascular Smooth Muscle Cell Hypertrophy by Angiotensin IIHypertension, 2008
- Protein Kinase Cɛ (PKCɛ) and Src Control PKCδ Activation Loop Phosphorylation in CardiomyocytesPublished by Elsevier ,2007
- Exacerbated vein graft arteriosclerosis in protein kinase Cδ–null miceJournal of Clinical Investigation, 2001