4.8 Article

Trafficking of Vacuolar Proteins: The Crucial Role of Arabidopsis Vacuolar Protein Sorting 29 in Recycling Vacuolar Sorting Receptor

Journal

PLANT CELL
Volume 24, Issue 12, Pages 5058-5073

Publisher

OXFORD UNIV PRESS INC
DOI: 10.1105/tpc.112.103481

Keywords

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Funding

  1. National Research Foundation [NRF-20120001015, 2011-0012880]
  2. World Class University Project [R31-2008-000-10105-0]
  3. Advanced Biomass RD Center [20110031340]
  4. Ministry of Education, Science, and Technology (Korea)
  5. Ministry for Food, Agriculture, Forestry, and Fisheries, Republic of Korea [609004-05-4-SB240]
  6. Next-Generation BioGreen 21 Program, Rural Development Administration, Republic of Korea [PJ0080142011]
  7. National Research Foundation of Korea [2011-0012880] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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The retromer is involved in recycling lysosomal sorting receptors in mammals. A component of the retromer complex in Arabidopsis thaliana, vacuolar protein sorting 29 (VPS29), plays a crucial role in trafficking storage proteins to protein storage vacuoles. However, it is not known whether or how vacuolar sorting receptors (VSRs) are recycled from the prevacuolar compartment (PVC) to the trans-Golgi network (TGN) during trafficking to the lytic vacuole (LV). Here, we report that VPS29 plays an essential role in the trafficking of soluble proteins to the LV from the TGN to the PVC. maigo1-1 (mag1-1) mutants, which harbor a knockdown mutation in VPS29, were defective in trafficking of two soluble proteins, Arabidopsis aleurain-like protein (AALP): green fluorescent protein (GFP) and sporamin: GFP, to the LV but not in trafficking membrane proteins to the LV or plasma membrane or via the secretory pathway. AALP: GFP and sporamin: GFP in mag1-1 protoplasts accumulated in the TGN but were also secreted into the medium. In mag1-1 mutants, VSR1 failed to recycle from the PVC to the TGN; rather, a significant proportion was transported to the LV; VSR1 overexpression rescued this defect. Moreover, endogenous VSRs were expressed at higher levels in mag1-1 plants. Based on these results, we propose that VPS29 plays a crucial role in recycling VSRs from the PVC to the TGN during the trafficking of soluble proteins to the LV.

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