Literature DB >> 15994323

Identification of conserved prolyl residue important for transport activity and the substrate specificity range of yeast plasma membrane Na+/H+ antiporters.

Olga Kinclova-Zimmermannova1, Martin Zavrel, Hana Sychrova.   

Abstract

Yeast plasma membrane Na+/H+ antiporters are divided according to their substrate specificity in two distinct subfamilies. To identify amino acid residues responsible for substrate specificity determination (recognition of K+), the Zygosaccharomyces rouxii Sod2-22 antiporter (non-transporting K+) was mutagenized and a collection of ZrSod2-22 mutants that improved the KCl tolerance of a salt-sensitive Saccharomyces cerevisiae strain was isolated. Several independent ZrSod2-22 mutated alleles contained the replacement of a highly conserved proline 145 with a residue containing a hydroxyl group (Ser, Thr). Site-directed mutagenesis of Pro145 proved that an amino acid with a hydroxyl group at this position is enough to enable ZrSod2-22p to transport K+. Simultaneously, the P145(S/T) mutation decreased the antiporter transport activity for both Na+ and Li+. Replacement of Pro145 with glycine resulted in a ZrSod2-22p with extremely low activity only for Na+, and the exchange of a charged residue (Asp, Lys) for Pro145 completely stopped the activity. Mutagenesis of the corresponding proline in the S. cerevisiae Nha1 antiporter (Pro146) confirmed that this proline of the fifth transmembrane domain is a critical residue for antiporter function. This is the first evidence that a non-polar amino acid residue is important for the substrate specificity and activity of yeast Nha antiporters.

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Year:  2005        PMID: 15994323     DOI: 10.1074/jbc.M506341200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  13 in total

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2.  Chimeras between C. glabrata Cnh1 and S. cerevisiae Nha1 Na+/H+-antiporters are functional proteins increasing the salt tolerance of yeast cells.

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Journal:  Folia Microbiol (Praha)       Date:  2010-10-13       Impact factor: 2.099

3.  Mutational analysis of NHAoc/NHA2 in Saccharomyces cerevisiae.

Authors:  Xiaobin Huang; Leslie R Morse; Yan Xu; Jaromir Zahradka; Hana Sychrová; Phil Stashenko; Feiyue Fan; Ricardo A Battaglino
Journal:  Biochim Biophys Acta       Date:  2010-08-14

4.  Membrane hyperpolarization drives cation influx and fungicidal activity of amiodarone.

Authors:  Lydie Maresova; Sabina Muend; Yong-Qiang Zhang; Hana Sychrova; Rajini Rao
Journal:  J Biol Chem       Date:  2008-12-02       Impact factor: 5.157

5.  The high-capacity specific fructose facilitator ZrFfz1 is essential for the fructophilic behavior of Zygosaccharomyces rouxii CBS 732T.

Authors:  Maria José Leandro; Sara Cabral; Catarina Prista; Maria C Loureiro-Dias; Hana Sychrová
Journal:  Eukaryot Cell       Date:  2014-08-29

6.  Saccharomyces cerevisiae can secrete Sapp1p proteinase of Candida parapsilosis but cannot use it for efficient nitrogen acquisition.

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Journal:  J Microbiol       Date:  2013-06-28       Impact factor: 3.422

7.  Potassium supply and homeostasis in the osmotolerant non-conventional yeasts Zygosaccharomyces rouxii differ from Saccharomyces cerevisiae.

Authors:  Jiří Stříbný; Olga Kinclová-Zimmermannová; Hana Sychrová
Journal:  Curr Genet       Date:  2012-09-05       Impact factor: 3.886

8.  ZrFsy1, a high-affinity fructose/H+ symporter from fructophilic yeast Zygosaccharomyces rouxii.

Authors:  Maria José Leandro; Hana Sychrová; Catarina Prista; Maria C Loureiro-Dias
Journal:  PLoS One       Date:  2013-07-02       Impact factor: 3.240

9.  Production of Yarrowia lipolytica Nha2 Na+/H+ antiporter improves the salt tolerance of Saccharomyces cerevisiae.

Authors:  K Papousková; H Sychrová
Journal:  Folia Microbiol (Praha)       Date:  2007       Impact factor: 2.629

10.  Functional comparison of plasma-membrane Na+/H+ antiporters from two pathogenic Candida species.

Authors:  Yannick Krauke; Hana Sychrova
Journal:  BMC Microbiol       Date:  2008-05-20       Impact factor: 3.605

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