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Journal Abstract Search


838 related items for PubMed ID: 16581873

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  • 4. In vivo phosphorylation sites of barley tonoplast proteins identified by a phosphoproteomic approach.
    Endler A, Reiland S, Gerrits B, Schmidt UG, Baginsky S, Martinoia E.
    Proteomics; 2009 Jan; 9(2):310-21. PubMed ID: 19142958
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  • 5. The Arabidopsis vacuolar malate channel is a member of the ALMT family.
    Kovermann P, Meyer S, Hörtensteiner S, Picco C, Scholz-Starke J, Ravera S, Lee Y, Martinoia E.
    Plant J; 2007 Dec; 52(6):1169-80. PubMed ID: 18005230
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  • 7. Quantitative detection of changes in the leaf-mesophyll tonoplast proteome in dependency of a cadmium exposure of barley (Hordeum vulgare L.) plants.
    Schneider T, Schellenberg M, Meyer S, Keller F, Gehrig P, Riedel K, Lee Y, Eberl L, Martinoia E.
    Proteomics; 2009 May; 9(10):2668-77. PubMed ID: 19391183
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  • 8. Zinc transporter of Arabidopsis thaliana AtMTP1 is localized to vacuolar membranes and implicated in zinc homeostasis.
    Kobae Y, Uemura T, Sato MH, Ohnishi M, Mimura T, Nakagawa T, Maeshima M.
    Plant Cell Physiol; 2004 Dec; 45(12):1749-58. PubMed ID: 15653794
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  • 9. How sweet it is: identification of vacuolar sucrose transporters.
    Grennan AK, Gragg J.
    Plant Physiol; 2009 Jul; 150(3):1109-10. PubMed ID: 19574476
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  • 10. Vacuoles release sucrose via tonoplast-localised SUC4-type transporters.
    Schneider S, Hulpke S, Schulz A, Yaron I, Höll J, Imlau A, Schmitt B, Batz S, Wolf S, Hedrich R, Sauer N.
    Plant Biol (Stuttg); 2012 Mar; 14(2):325-36. PubMed ID: 21972845
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  • 12. Novel tonoplast transporters identified using a proteomic approach with vacuoles isolated from cauliflower buds.
    Schmidt UG, Endler A, Schelbert S, Brunner A, Schnell M, Neuhaus HE, Marty-Mazars D, Marty F, Baginsky S, Martinoia E.
    Plant Physiol; 2007 Sep; 145(1):216-29. PubMed ID: 17660356
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  • 13. Functional analysis of LjSUT4, a vacuolar sucrose transporter from Lotus japonicus.
    Reinders A, Sivitz AB, Starker CG, Gantt JS, Ward JM.
    Plant Mol Biol; 2008 Oct; 68(3):289-99. PubMed ID: 18618272
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  • 14. Analyzing the Vacuolar Membrane (Tonoplast) Proteome.
    Ohnishi M, Yoshida K, Mimura T.
    Methods Mol Biol; 2018 Oct; 1696():107-116. PubMed ID: 29086399
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  • 15. Arabidopsis vacuolar sorting mutants (green fluorescent seed) can be identified efficiently by secretion of vacuole-targeted green fluorescent protein in their seeds.
    Fuji K, Shimada T, Takahashi H, Tamura K, Koumoto Y, Utsumi S, Nishizawa K, Maruyama N, Hara-Nishimura I.
    Plant Cell; 2007 Feb; 19(2):597-609. PubMed ID: 17293568
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  • 16. The vegetative vacuole proteome of Arabidopsis thaliana reveals predicted and unexpected proteins.
    Carter C, Pan S, Zouhar J, Avila EL, Girke T, Raikhel NV.
    Plant Cell; 2004 Dec; 16(12):3285-303. PubMed ID: 15539469
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  • 17. AtPTR4 and AtPTR6 are differentially expressed, tonoplast-localized members of the peptide transporter/nitrate transporter 1 (PTR/NRT1) family.
    Weichert A, Brinkmann C, Komarova NY, Dietrich D, Thor K, Meier S, Suter Grotemeyer M, Rentsch D.
    Planta; 2012 Feb; 235(2):311-23. PubMed ID: 21904872
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  • 18. Actin-filament-dependent remodeling of the vacuole in cultured mesophyll protoplasts.
    Sheahan MB, Rose RJ, McCurdy DW.
    Protoplasma; 2007 Feb; 230(3-4):141-52. PubMed ID: 17458629
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  • 19. Wounding enhances expression of AtSUC3, a sucrose transporter from Arabidopsis sieve elements and sink tissues.
    Meyer S, Lauterbach C, Niedermeier M, Barth I, Sjolund RD, Sauer N.
    Plant Physiol; 2004 Feb; 134(2):684-93. PubMed ID: 14739351
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  • 20. The plant vacuolar sorting receptor AtELP is involved in transport of NH(2)-terminal propeptide-containing vacuolar proteins in Arabidopsis thaliana.
    Ahmed SU, Rojo E, Kovaleva V, Venkataraman S, Dombrowski JE, Matsuoka K, Raikhel NV.
    J Cell Biol; 2000 Jun 26; 149(7):1335-44. PubMed ID: 10871276
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