Expression and Phosphorylation of the Na-Pump Regulatory Subunit Phospholemman in Heart Failure
- 16 September 2005
- journal article
- research article
- Published by Wolters Kluwer Health in Circulation Research
- Vol. 97 (6), 558-565
- https://doi.org/10.1161/01.res.0000181172.27931.c3
Abstract
Intracellular [Na] is ≈3 mmol/L higher in heart failure (HF; in our arrhythmogenic rabbit model;3), and this can profoundly affect cardiac Ca and contractile function via Na/Ca exchange and Na/H exchange. Na/K-ATPase is the primary mechanism of Na extrusion. We examine here in HF rabbits (and human hearts) expression of Na/K-ATPase isoforms and phospholemman (PLM), a putative Na/K-ATPase regulatory subunit that inhibits pump function and is a major cardiac phosphorylation target. Na/K-ATPase α1- and α2-isoforms were reduced in HF in rabbit ventricular homogenates (by 24%) and isolated myocytes (by 30% and 17%), whereas α3 was increased (50%) in homogenates and decreased (52%) in myocytes (P<0.05). Homogenate Na/K-ATPase activity in left ventricle was also decreased in HF. However, we showed previously that Na/K-ATPase characteristics in intact ventricular myocytes were unaltered in HF. To reconcile these findings, we assessed PLM expression, phosphorylation, and association with Na/K-ATPase. PLM coimmunoprecipitated with Na/K-ATPase α1 and α2 in control and HF rabbit myocytes. PLM expression was reduced in HF by 42% in isolated rabbit left ventricular (LV) myocytes, by 48% in rabbit LV homogenates, and by 24% in human LV homogenate. The fraction of PLM phosphorylated at Ser-68 was increased dramatically in HF. Our results are consistent with a role for PLM analogous to that of phospholamban for SR Ca-ATPase (SERCA): inhibition of Na/K-ATPase function that is relieved on PLM phosphorylation. So reduced Na/K-ATPase expression in HF may be functionally offset by lower inhibition by PLM (because of reduced PLM expression and higher PLM phosphorylation).Keywords
This publication has 27 references indexed in Scilit:
- Phospholemman-Phosphorylation Mediates the β-Adrenergic Effects on Na/K Pump Function in Cardiac MyocytesCirculation Research, 2005
- Effects of phospholemman downregulation on contractility and [Ca2+]itransients in adult rat cardiac myocytesAmerican Journal of Physiology-Heart and Circulatory Physiology, 2004
- Dynamic Regulation of Sodium/Calcium Exchange Function in Human Heart FailureCirculation, 2003
- Ischemia‐induced phosphorylation of phospholemman directly activates rat cardiac Na/K ATPaseThe FASEB Journal, 2003
- Intracellular Na+ and altered Na+ transport mechanisms in cardiac hypertrophy and failureJournal of Molecular and Cellular Cardiology, 2003
- Rate Dependence of [Na + ] i and Contractility in Nonfailing and Failing Human MyocardiumCirculation, 2002
- Protein Kinase C Phosphorylation of Purified Na,K-ATPase: C-Terminal Phosphorylation Sites at the α- and γ-Subunits Close to the Inner Face of the Plasma MembraneBiophysical Journal, 2002
- Differential Regulation of Renal Na,K-ATPase by Splice Variants of the γ SubunitPublished by Elsevier ,2002
- Identification of a Phospholemman-like Protein from Shark Rectal GlandsJournal of Biological Chemistry, 2000
- The FXYD Gene Family of Small Ion Transport Regulators or Channels: cDNA Sequence, Protein Signature Sequence, and ExpressionGenomics, 2000