| Literature DB >> 28174535 |
Brent M Wood1, Julie Bossuyt1.
Abstract
Protein Kinase D isoforms (PKD 1-3) are key mediators of neurohormonal, oxidative, and metabolic stress signals. PKDs impact a wide variety of signaling pathways and cellular functions including actin dynamics, vesicle trafficking, cell motility, survival, contractility, energy substrate utilization, and gene transcription. PKD activity is also increasingly linked to cancer, immune regulation, pain modulation, memory, angiogenesis, and cardiovascular disease. This increasing complexity and diversity of PKD function, highlights the importance of tight spatiotemporal control of the kinase via protein-protein interactions, post-translational modifications or targeting via scaffolding proteins. In this review, we focus on the spatiotemporal regulation and effects of PKD signaling in response to neurohormonal, oxidant and metabolic signals that have implications for myocardial disease. Precise targeting of these mechanisms will be crucial in the design of PKD-based therapeutic strategies.Entities:
Keywords: GPCR; cardiovascular disease; heart failure; metabolism; oxidative stress; protein kinase D
Year: 2017 PMID: 28174535 PMCID: PMC5258689 DOI: 10.3389/fphar.2017.00009
Source DB: PubMed Journal: Front Pharmacol ISSN: 1663-9812 Impact factor: 5.810
Protein Kinase D target phosphorylation sites and verified functions in cardiovascular cell types.
| Target | Phosho-site | Function | Agonist/Model | Cell/tissue type | Species | Source |
|---|---|---|---|---|---|---|
| Rem1 | S18 | Increased LTCC trafficking to the membrane and activity | Phenylephrine | Neonatal and adult ventricular myocytes | Rat | |
| eNOS | S1179 | Increased NO synthesis | VEGF, PDBu | Aortic endothelial cells | Cattle | |
| HDAC5 | S259, S498 | Nuclear export and MEF2 upregulation | PE, ET-1, Fetal Bovine Serum | Neonatal and adult ventricular myocytes | Rabbit | |
| CREB | S133 | Increased Bcl2 expression | Thrombin and | Neonatal ventricular myocytes and fibroblasts (rat), adult whole ventricle (mouse) | Rat, Mouse | |
| Telethonin | S157, S161 | Maintenance of T-tubule organization and calcium transient dynamics | Constitutively phosphorylated endogenously/ | Adult ventricular myocytes, whole heart | Rat | |
| Tn I | S22, S23 | Reduction of myofilament calcium sensitivity | ET-1 | Intact and skinned adult ventricular myocytes | Rat | |
| MyBPc | S302 | Acceleration of cross-bridge kinetics | ±PKD | Skinned ventricular myocytes | Mouse | |
| MyBPc | S315 | Increase in maximal calcium-activated contraction tension | WT/cMyBPc KO myocytes ±PKD | Permeabilized adult ventricular myocytes | Rat | |
| SSH1L | S978 | Protection from oxidative stress response of Cofilin 2 | Sphingosine 1-phosphate | Cardiomyocytes and whole left ventricles | Mouse |