Literature DB >> 23224879

Coordinated regulation of cardiac Na(+)/Ca (2+) exchanger and Na (+)-K (+)-ATPase by phospholemman (FXYD1).

Joseph Y Cheung1, Xue-Qian Zhang, Jianliang Song, Erhe Gao, Tung O Chan, Joseph E Rabinowitz, Walter J Koch, Arthur M Feldman, JuFang Wang.   

Abstract

Phospholemman (PLM) is the founding member of the FXYD family of regulators of ion transport. PLM is a 72-amino acid protein consisting of the signature PFXYD motif in the extracellular N terminus, a single transmembrane (TM) domain, and a C-terminal cytoplasmic tail containing three phosphorylation sites. In the heart, PLM co-localizes and co-immunoprecipitates with Na(+)-K(+)-ATPase, Na(+)/Ca(2+) exchanger, and L-type Ca(2+) channel. The TM domain of PLM interacts with TM9 of the α-subunit of Na(+)-K(+)-ATPase, while its cytoplasmic tail interacts with two small regions (spanning residues 248-252 and 300-304) of the proximal intracellular loop of Na(+)/Ca(2+) exchanger. Under stress, catecholamine stimulation phosphorylates PLM at serine(68), resulting in relief of inhibition of Na(+)-K(+)-ATPase by decreasing K(m) for Na(+) and increasing V(max), and simultaneous inhibition of Na(+)/Ca(2+) exchanger. Enhanced Na(+)-K(+)-ATPase activity lowers intracellular Na(+), thereby minimizing Ca(2+) overload and risks of arrhythmias. Inhibition of Na(+)/Ca(2+) exchanger reduces Ca(2+) efflux, thereby preserving contractility. Thus, the coordinated actions of PLM during stress serve to minimize arrhythmogenesis and maintain inotropy. In acute cardiac ischemia and chronic heart failure, either expression or phosphorylation of PLM or both are altered. PLM regulates important ion transporters in the heart and offers a tempting target for development of drugs to treat heart failure.

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Year:  2013        PMID: 23224879     DOI: 10.1007/978-1-4614-4756-6_15

Source DB:  PubMed          Journal:  Adv Exp Med Biol        ISSN: 0065-2598            Impact factor:   2.622


  12 in total

Review 1.  Sodium-calcium exchangers (NCX): molecular hallmarks underlying the tissue-specific and systemic functions.

Authors:  Daniel Khananshvili
Journal:  Pflugers Arch       Date:  2013-11-27       Impact factor: 3.657

2.  Induced overexpression of phospholemman S68E mutant improves cardiac contractility and mortality after ischemia-reperfusion.

Authors:  JuFang Wang; Jianliang Song; Erhe Gao; Xue-Qian Zhang; Tongda Gu; Daohai Yu; Walter J Koch; Arthur M Feldman; Joseph Y Cheung
Journal:  Am J Physiol Heart Circ Physiol       Date:  2014-01-31       Impact factor: 4.733

3.  Investigation of therapeutic potential and molecular mechanism of vitamin P and digoxin in I/R-induced myocardial infarction in rat.

Authors:  Harwinder Singh; Parneet Kaur; Pradeep Kaur; Arunachalam Muthuraman; Gurpreet Singh; Manjinder Kaur
Journal:  Naunyn Schmiedebergs Arch Pharmacol       Date:  2015-02-19       Impact factor: 3.000

4.  L30A Mutation of Phospholemman Mimics Effects of Cardiac Glycosides in Isolated Cardiomyocytes.

Authors:  Ryan D Himes; Nikolai Smolin; Andreas Kukol; Julie Bossuyt; Donald M Bers; Seth L Robia
Journal:  Biochemistry       Date:  2016-10-25       Impact factor: 3.162

Review 5.  Role of Na+/K+-ATPase in ischemic stroke: in-depth perspectives from physiology to pharmacology.

Authors:  Mengyuan Zhu; Haijian Sun; Lei Cao; Zhiyuan Wu; Bin Leng; Jinsong Bian
Journal:  J Mol Med (Berl)       Date:  2021-11-27       Impact factor: 4.599

6.  Regulation of L-type calcium channel by phospholemman in cardiac myocytes.

Authors:  Xue-Qian Zhang; JuFang Wang; Jianliang Song; Joseph Rabinowitz; Xiongwen Chen; Steven R Houser; Blaise Z Peterson; Amy L Tucker; Arthur M Feldman; Joseph Y Cheung
Journal:  J Mol Cell Cardiol       Date:  2015-04-25       Impact factor: 5.000

7.  Reliability of nine programs of topological predictions and their application to integral membrane channel and carrier proteins.

Authors:  Abhinay Reddy; Jaehoon Cho; Sam Ling; Vamsee Reddy; Maksim Shlykov; Milton H Saier
Journal:  J Mol Microbiol Biotechnol       Date:  2014-06-27

8.  Differential metal content and gene expression in rat left ventricular hypertrophy due to hypertension and hyperactivity.

Authors:  Meenakumari Subramanian; Adam L Hunt; Giuseppe A Petrucci; Zengyi Chen; Edith D Hendley; Bradley M Palmer
Journal:  J Trace Elem Med Biol       Date:  2014-02-22       Impact factor: 3.849

9.  Development of a high-affinity peptide that prevents phospholemman (PLM) inhibition of the sodium/calcium exchanger 1 (NCX1).

Authors:  Pimthanya Wanichawan; Kjetil Hodne; Tandekile Lubelwana Hafver; Marianne Lunde; Marita Martinsen; William Edward Louch; Ole Mathias Sejersted; Cathrine Rein Carlson
Journal:  Biochem J       Date:  2016-05-31       Impact factor: 3.857

Review 10.  Targeting cardiomyocyte Ca2+ homeostasis in heart failure.

Authors:  Asmund T Roe; Michael Frisk; William E Louch
Journal:  Curr Pharm Des       Date:  2015       Impact factor: 3.116

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