AtRMR1 functions as a cargo receptor for protein trafficking to the protein storage vacuole
Open Access
- 22 August 2005
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 170 (5) , 757-767
- https://doi.org/10.1083/jcb.200504112
Abstract
Organellar proteins are sorted by cargo receptors on the way to their final destination. However, receptors for proteins that are destined for the protein storage vacuole (PSV) are largely unknown. In this study, we investigated the biological role that Arabidopsis thaliana receptor homology region transmembrane domain ring H2 motif protein (AtRMR) 1 plays in protein trafficking to the PSV. AtRMR1 mainly colocalized to the prevacuolar compartment of the PSV, but a minor portion also localized to the Golgi complex. The coexpression of AtRMR1 mutants that were localized to the Golgi complex strongly inhibited the trafficking of phaseolin to the PSV and caused accumulation of phaseolin in the Golgi complex or its secretion. Coimmunoprecipitation and in vitro binding assays revealed that the lumenal domain of AtRMR1 interacts with the COOH-terminal sorting signal of phaseolin at acidic pH. Furthermore, phaseolin colocalized with AtRMR1 on its way to the PSV. Based on these results, we propose that AtRMR1 functions as the sorting receptor of phaseolin for its trafficking to the PSV.Keywords
This publication has 48 references indexed in Scilit:
- Identification of the Protein Storage Vacuole and Protein Targeting to the Vacuole in Leaf Cells of Three Plant SpeciesPlant Physiology, 2004
- Trafficking of Phosphatidylinositol 3-Phosphate from the trans-Golgi Network to the Lumen of the Central Vacuole in Plant CellsPlant Cell, 2001
- Biogenesis of the Protein Storage Vacuole CrystalloidThe Journal of cell biology, 2000
- Structural Requirements for Ligand Binding by a Probable Plant Vacuolar Sorting ReceptorPlant Cell, 2000
- Vacuolar Storage Proteins and the Putative Vacuolar Sorting Receptor BP-80 Exit the Golgi Apparatus of Developing Pea Cotyledons in Different Transport VesiclesPlant Cell, 1999
- Barley Aleurone Cells Contain Two Types of Vacuoles: Characterization of Lytic Organelles by Use of Fluorescent ProbesPlant Cell, 1998
- Assembly and transport of seed storage proteinsTrends in Cell Biology, 1993
- Tonoplast and Soluble Vacuolar Proteins Are Targeted by Different MechanismsPlant Cell, 1993
- Short peptide domains target proteins to plant vacuolesCell, 1992
- Immunocytochemical evidence for the involvement of golgi apparatus in the deposition of seed lectin ofBauhinia purpurea (Leguminosae)Protoplasma, 1984