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1
Routes to the tonoplast: the sorting of tonoplast transporters in Arabidopsis mesophyll protoplasts.
Plant Cell. 2012 Jan;24(1):215-32. doi: 10.1105/tpc.111.090415. Epub 2012 Jan 17.
2
Identification of a vacuolar sucrose transporter in barley and Arabidopsis mesophyll cells by a tonoplast proteomic approach.
Plant Physiol. 2006 May;141(1):196-207. doi: 10.1104/pp.106.079533. Epub 2006 Mar 31.
3
Vacuoles release sucrose via tonoplast-localised SUC4-type transporters.
Plant Biol (Stuttg). 2012 Mar;14(2):325-36. doi: 10.1111/j.1438-8677.2011.00506.x. Epub 2011 Sep 13.
4
Trans-Golgi network-located AP1 gamma adaptins mediate dileucine motif-directed vacuolar targeting in Arabidopsis.
Plant Cell. 2014 Oct;26(10):4102-18. doi: 10.1105/tpc.114.129759. Epub 2014 Oct 28.
5
Proton-driven sucrose symport and antiport are provided by the vacuolar transporters SUC4 and TMT1/2.
Plant J. 2011 Oct;68(1):129-36. doi: 10.1111/j.1365-313X.2011.04672.x. Epub 2011 Jul 27.
6
Determinants for Arabidopsis peptide transporter targeting to the tonoplast or plasma membrane.
Traffic. 2012 Aug;13(8):1090-105. doi: 10.1111/j.1600-0854.2012.01370.x. Epub 2012 May 17.
8
Sorting of Arabidopsis NRAMP3 and NRAMP4 depends on adaptor protein complex AP4 and a dileucine-based motif.
Traffic. 2018 Jul;19(7):503-521. doi: 10.1111/tra.12567. Epub 2018 Apr 17.

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3
Adaptor protein complex interaction map in Arabidopsis identifies P34 as a common stability regulator.
Nat Plants. 2023 Feb;9(2):355-371. doi: 10.1038/s41477-022-01328-2. Epub 2023 Jan 12.
6
Molecular mechanisms of endomembrane trafficking in plants.
Plant Cell. 2022 Jan 20;34(1):146-173. doi: 10.1093/plcell/koab235.
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Motif-based endomembrane trafficking.
Plant Physiol. 2021 May 27;186(1):221-238. doi: 10.1093/plphys/kiab077.
9
The sucrose transporter MdSUT4.1 participates in the regulation of fruit sugar accumulation in apple.
BMC Plant Biol. 2020 May 6;20(1):191. doi: 10.1186/s12870-020-02406-3.
10
MTV proteins unveil ER- and microtubule-associated compartments in the plant vacuolar trafficking pathway.
Proc Natl Acad Sci U S A. 2020 May 5;117(18):9884-9895. doi: 10.1073/pnas.1919820117. Epub 2020 Apr 22.

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1
The secretory system of Arabidopsis.
Arabidopsis Book. 2008;6:e0116. doi: 10.1199/tab.0116. Epub 2008 Sep 30.
2
Vacuoles release sucrose via tonoplast-localised SUC4-type transporters.
Plant Biol (Stuttg). 2012 Mar;14(2):325-36. doi: 10.1111/j.1438-8677.2011.00506.x. Epub 2011 Sep 13.
4
Identification of an Arabidopsis solute carrier critical for intracellular transport and inter-organ allocation of molybdate.
Plant Biol (Stuttg). 2011 Sep;13(5):710-8. doi: 10.1111/j.1438-8677.2011.00448.x. Epub 2011 Feb 11.
5
Assembly and sorting of the tonoplast potassium channel AtTPK1 and its turnover by internalization into the vacuole.
Plant Physiol. 2011 Aug;156(4):1783-96. doi: 10.1104/pp.111.177816. Epub 2011 Jun 22.
6
The AP-3 adaptor complex is required for vacuolar function in Arabidopsis.
Cell Res. 2011 Dec;21(12):1711-22. doi: 10.1038/cr.2011.99. Epub 2011 Jun 14.
7
Proton-driven sucrose symport and antiport are provided by the vacuolar transporters SUC4 and TMT1/2.
Plant J. 2011 Oct;68(1):129-36. doi: 10.1111/j.1365-313X.2011.04672.x. Epub 2011 Jul 27.
8
Multiple cytosolic and transmembrane determinants are required for the trafficking of SCAMP1 via an ER-Golgi-TGN-PM pathway.
Plant J. 2011 Mar;65(6):882-96. doi: 10.1111/j.1365-313X.2010.04469.x. Epub 2011 Jan 19.
9
Rice two-pore K+ channels are expressed in different types of vacuoles.
Plant Cell. 2011 Feb;23(2):756-68. doi: 10.1105/tpc.110.081463. Epub 2011 Jan 11.
10
Mechanisms and effects of retention of over-expressed aquaporin AtPIP2;1 in the endoplasmic reticulum.
Traffic. 2011 Apr;12(4):473-82. doi: 10.1111/j.1600-0854.2010.01154.x. Epub 2011 Feb 1.

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