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  • 1.
    Lagerstedt, Jens
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Intracellular localization of an active green fluorescent protein-tagged Pho84 phosphate permease in Saccharomyces cerevisiae1999In: FEBS Letters, Vol. 462Article in journal (Refereed)
  • 2.
    Lagerstedt, Jens
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Phosphate permeases of Saccharomyces cerevisiae1998In: Biochim. Biophys. Acta, Vol. 1365Article in journal (Refereed)
  • 3.
    Lagerstedt, Jens
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Phosphate permeases of Saccharomyces cerevisiae; Structure, Function and Regulation1999In: Biochim. Biophys. Acta, Vol. 1422Article in journal (Refereed)
  • 4.
    Lagerstedt, Jens
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Regulation of phosphate acquisition in Saccharomyces cerevisiae2003In: Current Genetics, Vol. 43Article in journal (Refereed)
  • 5.
    Lagerstedt, Jens
    University of Kalmar, School of Pure and Applied Natural Sciences.
    The yeast phosphate transporting system: Regulated trafficking of the Pho84 phosphate transporter; In Molecular Biology and Physiology of Water and Solute Transport: Fundamental Research and Applied Aspects2000In: , Kluwer Academic Press (Plenum Publ. Co.)Article in journal (Refereed)
  • 6.
    Lagerstedt, Jens
    et al.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Reeve, I
    Voss, J C
    Persson, Bengt L.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Structure and function of the GTP binding protein Gtr1 and its role in phosphate transport in Saccharomyces cerevisiae2005In: Biochemistry, Vol. 44 (2), p. 511-517Article in journal (Refereed)
  • 7.
    Lagerstedt, Jens
    et al.
    Växjö University, Faculty of Mathematics/Science/Technology, Institutionen för biovetenskaper och processteknik.
    Zvyagilskaya, Renata
    Pratt, James
    Växjö University, Faculty of Mathematics/Science/Technology, Institutionen för biovetenskaper och processteknik.
    Pattison-Granberg, Johanna
    Växjö University, Faculty of Mathematics/Science/Technology, Institutionen för biovetenskaper och processteknik.
    Kruckeberg, A L
    Berden, J
    Persson, Bengt L.
    Växjö University, Faculty of Mathematics/Science/Technology, Institutionen för biovetenskaper och processteknik.
    Mutagenic and Functional Analysis of the C-terminus of Saccharomyces cerevisiae Pho84 Phosphate Transporter2002In: FEBS letters, Vol. 526, p. 31-37Article in journal (Refereed)
  • 8.
    Lundh, Fredrik
    et al.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Mouillon, Jean-Marie
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Samyn, Dieter R.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Stadler, Kent
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Popova, Yulia
    Lagerstedt, Jens
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Thevelein, Johan
    Persson, Bengt L.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Molecular mechanisms controlling phosphate-induced downregulation of the yeast Pho84 phosphate transporter2009In: Biochemistry, ISSN 0006-2960, E-ISSN 1520-4995, Vol. 48, no 21, p. 4497-4505Article in journal (Refereed)
    Abstract [en]

    In Saccharomyces cerevisiae, phosphate uptake is mainly dependent on the proton-coupled Pho84 permease under phosphate-limited growth conditions. Phosphate addition causes Pho84-mediated activation of the protein kinase A (PKA) pathway as well as rapid internalization and vacuolar breakdown of Pho84. We show that Pho84 undergoes phosphate-induced phosphorylation and subsequent ubiquitination on amino acids located in the large middle intracellular loop prior to endocytosis. The attachment of ubiquitin is dependent on the ubiquitin conjugating enzymes Ubc2 and Ubc4. In addition, we show that the Pho84 endocytotic process is delayed in strains with reduced PKA activity. Our results suggest that Pho84-mediated activation of the PKA pathway is responsible for its own downregulation by phosphorylation, ubiquination, internalization, and vacuolar breakdown.

  • 9. Thuswaldner, Sophie
    et al.
    Lagerstedt, Jens
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Rojas-Stütz, Marc
    Bouhidel, Karim
    Der, Christophe
    Leborgne-Castel, Natalie
    Mishra, Arti
    Marty, Francis
    Schroefs, Benoit
    Adamska, Iwona
    Persson, Bengt L.
    University of Kalmar, School of Pure and Applied Natural Sciences.
    Spetea, Cornelia
    Identification, expression, and functional analyses of a thylakoid ATP/ADP carrier from Arabidopsis2007In: Journal of Biological Chemistry, ISSN 0021-9258, E-ISSN 1083-351X, Vol. 282, p. 8848-8859Article in journal (Refereed)
1 - 9 of 9
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