Two novel WD40 domain–containing proteins, Ere1 and Ere2, function in the retromer-mediated endosomal recycling pathway
Open Access
- 1 November 2011
- journal article
- research article
- Published by American Society for Cell Biology (ASCB) in Molecular Biology of the Cell
- Vol. 22 (21) , 4093-4107
- https://doi.org/10.1091/mbc.e11-05-0440
Abstract
Regulated secretion, nutrient uptake, and responses to extracellular signals depend on cell-surface proteins that are internalized and recycled back to the plasma membrane. However, the underlying mechanisms that govern membrane protein recycling to the cell surface are not fully known. Using a chemical-genetic screen in yeast, we show that the arginine transporter Can1 is recycled back to the cell surface via two independent pathways mediated by the sorting nexins Snx4/41/42 and the retromer complex, respectively. In addition, we identify two novel WD40-domain endosomal recycling proteins, Ere1 and Ere2, that function in the retromer pathway. Ere1 is required for Can1 recycling via the retromer-mediated pathway, but it is not required for the transport of other retromer cargoes, such as Vps10 and Ftr1. Biochemical studies reveal that Ere1 physically interacts with internalized Can1. Ere2 is present in a complex containing Ere1 on endosomes and functions as a regulator of Ere1. Taken together, our results suggest that Snx4/41/42 and the retromer comprise two independent pathways for the recycling of internalized cell-surface proteins. Moreover, a complex containing the two novel proteins Ere1 and Ere2 mediates cargo-specific recognition by the retromer pathway.This publication has 63 references indexed in Scilit:
- SNX27 mediates retromer tubule entry and endosome-to-plasma membrane trafficking of signalling receptorsNature Cell Biology, 2011
- Signaling, cytoskeletal and membrane mechanisms regulating GLUT4 exocytosisTrends in Endocrinology & Metabolism, 2011
- Sequence-Dependent Sorting of Recycling Proteins by Actin-Stabilized Endosomal MicrodomainsCell, 2010
- Structure of Coatomer Cage Proteins and the Relationship among COPI, COPII, and Clathrin Vesicle CoatsCell, 2010
- The Conserved Bardet-Biedl Syndrome Proteins Assemble a Coat that Traffics Membrane Proteins to CiliaCell, 2010
- ESCRT-II coordinates the assembly of ESCRT-III filaments for cargo sorting and multivesicular body vesicle formationThe EMBO Journal, 2010
- Shiga toxins — from cell biology to biomedical applicationsNature Reviews Microbiology, 2009
- Tracing the Retrograde Route in Protein TraffickingCell, 2008
- Arrestin-Related Ubiquitin-Ligase Adaptors Regulate Endocytosis and Protein Turnover at the Cell SurfaceCell, 2008
- C. elegans AP-2 and Retromer Control Wnt Signaling by Regulating MIG-14/WntlessDevelopmental Cell, 2008