Ca 2+ /Calmodulin-Dependent Protein Kinase IIδ and Protein Kinase D Overexpression Reinforce the Histone Deacetylase 5 Redistribution in Heart Failure
- 28 March 2008
- journal article
- research article
- Published by Wolters Kluwer Health in Circulation Research
- Vol. 102 (6) , 695-702
- https://doi.org/10.1161/circresaha.107.169755
Abstract
Cardiac hypertrophy and heart failure (HF) are associated with reactivation of fetal cardiac genes, and class II histone deacetylases (HDACs) (eg, HDAC5) have been strongly implicated in this process. We have shown previously that inositol trisphosphate, Ca2+/calmodulin-dependent protein kinase II (CaMKII), and protein kinase (PK)D are involved in HDAC5 phosphorylation and nuclear export in normal adult ventricular myocytes and also that CaMKIIδ and inositol trisphosphate receptors are upregulated in HF. Here we tested whether, in our rabbit HF model, nucleocytoplasmic shuttling of HDAC5 was altered either at baseline or in response to endothelin-1, which would indicate HDAC5 phosphorylation and transcription effects. The fusion protein HDAC5–green fluorescent protein (HDAC5-GFP) was more cytosolic in HF myocytes (Fnuc/Fcyto 3.3±0.3 vs 7.2±0.4 in control), and HDAC5 was more phosphorylated. Despite this baseline cytosolic HDAC5 shift, endothelin-1 produced more rapid HDAC5-GFP nuclear export in HF versus control myocytes. We also find that PKD and CaMKIIδC expression and activation state are increased in both rabbit and human HF. Inhibition of either CaMKII or PKD in HF myocytes partially restored the HDAC5-GFP Fnuc/Fcyto toward control, and simultaneous inhibition restored Fnuc/Fcyto to that in control myocytes. Moreover, adenovirus-mediated overexpression of PKD, CaMKIIδB, or CaMKIIδC reduced baseline HDAC5 Fnuc/Fcyto in control myocytes (3.4±0.5, 3.8±0.5, and 5.2±0.5, respectively), approaching that seen in HF. We conclude that chronic upregulation and activation of inositol trisphosphate receptors, CaMKII, and PKD in HF shifts HDAC5 out of the nucleus, derepressing transcription of hypertrophic genes. This may directly contribute to the development and/or maintenance of HF.Keywords
This publication has 33 references indexed in Scilit:
- CaMKIIδ Isoforms Differentially Affect Calcium Handling but Similarly Regulate HDAC/MEF2 Transcriptional ResponsesJournal of Biological Chemistry, 2007
- Temporal dissociation of frequency-dependent acceleration of relaxation and protein phosphorylation by CaMKIIJournal of Molecular and Cellular Cardiology, 2007
- Protein Kinase D Selectively Targets Cardiac Troponin I and Regulates Myofilament Ca 2+ Sensitivity in Ventricular MyocytesCirculation Research, 2007
- Nuclear Calcium/Calmodulin-dependent Protein Kinase IIδ Preferentially Transmits Signals to Histone Deacetylase 4 in Cardiac CellsPublished by Elsevier ,2007
- Calcium-dependent Regulation of Protein Kinase D Revealed by a Genetically Encoded Kinase Activity ReporterJournal of Biological Chemistry, 2007
- Contrasting Actions of Endothelin ETAand ETBReceptors in Cardiovascular DiseaseAnnual Review of Pharmacology and Toxicology, 2007
- CaM kinase II selectively signals to histone deacetylase 4 during cardiomyocyte hypertrophyJournal of Clinical Investigation, 2006
- Regulation of Cardiac Stress Signaling by Protein Kinase D1Molecular and Cellular Biology, 2006
- Histone Deacetylases 5 and 9 Govern Responsiveness of the Heart to a Subset of Stress Signals and Play Redundant Roles in Heart DevelopmentMolecular and Cellular Biology, 2004
- The Cardiac-specific Nuclear δB Isoform of Ca2+/Calmodulin-dependent Protein Kinase II Induces Hypertrophy and Dilated Cardiomyopathy Associated with Increased Protein Phosphatase 2A ActivityJournal of Biological Chemistry, 2002