Literature DB >> 15308648

UPS1 and UPS2 from Arabidopsis mediate high affinity transport of uracil and 5-fluorouracil.

Anja Schmidt1, Yan-Hua Su, Reinhard Kunze, Susan Warner, Matthew Hewitt, Robert D Slocum, Uwe Ludewig, Wolf B Frommer, Marcelo Desimone.   

Abstract

Salvage pathways play an important role in providing nucleobases to cells, which are unable to synthesize sufficient amounts for their needs. Cellular uptake systems for pyrimidines have been described, but in higher eukaryotes, transporters for thymine and uracil have not been identified. Two plant transporters, AtUPS1 and PvUPS1, were recently identified as transporters for allantoin in Arabidopsis and French bean, respectively. However, Arabidopsis, in contrast to tropical legumes, uses mainly amino acids for long distance transport. Allantoin transport has not been described in the Brassicaceae. Thus, the physiological substrates of ureide permease (UPS) transporters in Arabidopsis may be compounds structurally related to allantoin. A detailed analysis of the substrate specificities of two members of the AtUPS family shows that AtUPS1 and AtUPS2 mediate high affinity uracil and 5-fluorouracil (a toxic uracil analogue) transport when expressed in yeast and Xenopus oocytes. Consistent with a function during germination and early seedling development, AtUPS1 expression is transiently induced during the early stages of seedling development followed by up-regulation of AtUPS2 expression. Arabidopsis ups2 insertion mutants and ups1 lines, in which transcript levels were reduced by post-transcriptional gene silencing, are more tolerant to 5-fluorouracil as compared with wild type plants. The results suggest that in Arabidopsis UPS transporters are the main transporters for uracil and potentially other nucleobases, whereas during evolution legumes may have taken advantage of the low selectivity of UPS proteins for long distance transport of allantoin.

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Year:  2004        PMID: 15308648     DOI: 10.1074/jbc.M405433200

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


  18 in total

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Authors:  Michelle D Marko; Raymond M Newman; Florence K Gleason
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2.  Comparative studies on Ureide Permeases in Arabidopsis thaliana and analysis of two alternative splice variants of AtUPS5.

Authors:  Anja Schmidt; Nadine Baumann; Alexander Schwarzkopf; Wolf B Frommer; Marcelo Desimone
Journal:  Planta       Date:  2006-11       Impact factor: 4.116

3.  Early Senescence in Older Leaves of Low Nitrate-Grown Atxdh1 Uncovers a Role for Purine Catabolism in N Supply.

Authors:  Aigerim Soltabayeva; Sudhakar Srivastava; Assylay Kurmanbayeva; Aizat Bekturova; Robert Fluhr; Moshe Sagi
Journal:  Plant Physiol       Date:  2018-09-06       Impact factor: 8.340

4.  Nucleotide Metabolism in Plants.

Authors:  Claus-Peter Witte; Marco Herde
Journal:  Plant Physiol       Date:  2019-10-22       Impact factor: 8.340

5.  The solute specificity profiles of nucleobase cation symporter 1 (NCS1) from Zea mays and Setaria viridis illustrate functional flexibility.

Authors:  Micah Rapp; Jessica Schein; Kevin A Hunt; Vamsi Nalam; George S Mourad; Neil P Schultes
Journal:  Protoplasma       Date:  2015-05-29       Impact factor: 3.356

6.  Uridine-ribohydrolase is a key regulator in the uridine degradation pathway of Arabidopsis.

Authors:  Benjamin Jung; Martin Flörchinger; Hans-Henning Kunz; Michaela Traub; Ruth Wartenberg; Wolfgang Jeblick; H Ekkehard Neuhaus; Torsten Möhlmann
Journal:  Plant Cell       Date:  2009-03-17       Impact factor: 11.277

7.  Allantoin accumulation mediated by allantoinase downregulation and transport by Ureide Permease 5 confers salt stress tolerance to Arabidopsis plants.

Authors:  Carlos Ignacio Lescano; Carolina Martini; Claudio Alejandro González; Marcelo Desimone
Journal:  Plant Mol Biol       Date:  2016-05-21       Impact factor: 4.076

8.  Ureide Permease 5 (AtUPS5) Connects Cell Compartments Involved in Ureide Metabolism.

Authors:  Ignacio Lescano; María Florencia Bogino; Carolina Martini; Tomás María Tessi; Claudio Alejandro González; Karin Schumacher; Marcelo Desimone
Journal:  Plant Physiol       Date:  2019-12-20       Impact factor: 8.340

9.  Xanthine-derived metabolites enhance chlorophyll degradation in cotyledons and seedling growth during nitrogen deficient condition in Brassica rapa.

Authors:  So Young Yi; Myungjin Lee; Jana Jeevan Rameneni; Lu Lu; Chetan Kaur; Yong Pyo Lim
Journal:  Plant Signal Behav       Date:  2021-05-06

10.  Transcriptome analysis of the Arabidopsis megaspore mother cell uncovers the importance of RNA helicases for plant germline development.

Authors:  Anja Schmidt; Samuel E Wuest; Kitty Vijverberg; Célia Baroux; Daniela Kleen; Ueli Grossniklaus
Journal:  PLoS Biol       Date:  2011-09-20       Impact factor: 8.029

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