Literature DB >> 16371442

Cytoplasmic targeting signals mediate delivery of phospholemman to the plasma membrane.

Kristan L Lansbery1, Lauren C Burcea, Margaretta L Mendenhall, Robert W Mercer.   

Abstract

The FXYD protein family consists of several small, single-span membrane proteins that exhibit a high degree of homology. The best-known members of the family include the gamma-subunit of the Na(+)-K(+)-ATPase and phospholemman (PLM), a phosphoprotein of cardiac sarcolemma. Other members of the family include corticosteroid hormone-induced factor (CHIF), mammary tumor protein of 8 kDa (Mat-8), and related to ion channels (RIC). The exact physiological roles of the FXYD proteins remain unknown. To better characterize the function of the members of the FXYD protein family, we expressed several members of the family in Madin-Darby canine kidney (MDCK) cells. All of the FXYD proteins, with the exception of PLM, were primarily found in the basolateral plasma membrane. Surprisingly, PLM, a previously characterized plasma membrane protein, was found to colocalize with the endoplasmic reticulum marker protein disulfide isomerase. Treatment of MDCK cells expressing PLM with an agonist of PKC caused some of the PLM to be redistributed to the plasma membrane. Site-directed mutagenesis of residues within the cytoplasmic domain of PLM indicated that a negative charge at Ser69 is necessary to shift the localization of PLM to the plasma membrane. In addition, other regions of PLM necessary for either its endoplasmic reticulum or plasma membrane localization have been elucidated. In contrast to PLM, the plasma membrane localization of CHIF and RIC was not altered by mutation of potential cytoplasmic phosphorylation sites. Overall, these results suggest that phosphorylation of specific residues of PLM may direct PLM from an intracellular compartment to the plasma membrane.

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Year:  2005        PMID: 16371442     DOI: 10.1152/ajpcell.00110.2005

Source DB:  PubMed          Journal:  Am J Physiol Cell Physiol        ISSN: 0363-6143            Impact factor:   4.249


  15 in total

1.  Intracellular trafficking of FXYD1 (phospholemman) and FXYD7 proteins in Xenopus oocytes and mammalian cells.

Authors:  Shiri Moshitzky; Carol Asher; Haim Garty
Journal:  J Biol Chem       Date:  2012-04-25       Impact factor: 5.157

Review 2.  The isoelectric point, a key to understanding a variety of biochemical problems: a minireview.

Authors:  F M A H Schuurmans Stekhoven; M H A G Gorissen; G Flik
Journal:  Fish Physiol Biochem       Date:  2007-08-09       Impact factor: 2.794

3.  FXYD1 phosphorylation in vitro and in adult rat cardiac myocytes: threonine 69 is a novel substrate for protein kinase C.

Authors:  William Fuller; Jacqueline Howie; Linda M McLatchie; Roberta J Weber; C James Hastie; Kerry Burness; Davor Pavlovic; Michael J Shattock
Journal:  Am J Physiol Cell Physiol       Date:  2009-04-01       Impact factor: 4.249

4.  Multiple roles for the Na,K-ATPase subunits, Atp1a1 and Fxyd1, during brain ventricle development.

Authors:  Jessica T Chang; Laura Anne Lowery; Hazel Sive
Journal:  Dev Biol       Date:  2012-06-07       Impact factor: 3.582

5.  Phospholemman Ser69 phosphorylation contributes to sildenafil-induced cardioprotection against reperfusion injury.

Authors:  Melanie Madhani; Andrew R Hall; Friederike Cuello; Rebecca L Charles; Joseph R Burgoyne; William Fuller; Adrian J Hobbs; Michael J Shattock; Philip Eaton
Journal:  Am J Physiol Heart Circ Physiol       Date:  2010-06-11       Impact factor: 4.733

6.  Effects of PKA phosphorylation on the conformation of the Na,K-ATPase regulatory protein FXYD1.

Authors:  Peter Teriete; Khang Thai; Jungyuen Choi; Francesca M Marassi
Journal:  Biochim Biophys Acta       Date:  2009-09-15

7.  Human FXYD2 G41R mutation responsible for renal hypomagnesemia behaves as an inward-rectifying cation channel.

Authors:  Qun Sha; Wade Pearson; Lauren C Burcea; Darian A Wigfall; Paul H Schlesinger; Colin G Nichols; Robert W Mercer
Journal:  Am J Physiol Renal Physiol       Date:  2008-04-30

8.  Phospholemman regulates cardiac Na+/Ca2+ exchanger by interacting with the exchanger's proximal linker domain.

Authors:  Xue-Qian Zhang; Jufang Wang; Lois L Carl; Jianliang Song; Belinda A Ahlers; Joseph Y Cheung
Journal:  Am J Physiol Cell Physiol       Date:  2009-01-21       Impact factor: 4.249

9.  The inhibitory effect of phospholemman on the sodium pump requires its palmitoylation.

Authors:  Lindsay B Tulloch; Jacqueline Howie; Krzysztof J Wypijewski; Catherine R Wilson; William G Bernard; Michael J Shattock; William Fuller
Journal:  J Biol Chem       Date:  2011-08-25       Impact factor: 5.157

10.  Identification of zebrafish Fxyd11a protein that is highly expressed in ion-transporting epithelium of the gill and skin and its possible role in ion homeostasis.

Authors:  Kaori Saito; Nobuhiro Nakamura; Yusuke Ito; Kazuyuki Hoshijima; Masahiro Esaki; Boqiang Zhao; Shigehisa Hirose
Journal:  Front Physiol       Date:  2010-08-23       Impact factor: 4.566

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