Dominant‐Negative Behavior of Mammalian Vps35 in Yeast Requires a Conserved PRLYL Motif Involved in Retromer Assembly
Open Access
- 4 October 2007
- Vol. 8 (12) , 1829-1840
- https://doi.org/10.1111/j.1600-0854.2007.00658.x
Abstract
The retromer protein complex assists in recycling selected integral membrane proteins from endosomes to the trans Golgi network. One protein subcomplex (Vps35p, Vps26p and Vps29p) combines with a second (Vps17p and Vps5p) to form a coat involved in sorting and budding of endosomal vesicles. Yeast Vps35p (yVps35) exhibits similarity to human Vps35 (hVps35), especially in a completely conserved PRLYL motif contained within an amino-terminal domain. Companion studies indicate that an R98W mutation in yVps35 causes defective retromer assembly in Saccharomyces cerevisiae. Herein, we find that the expression of hVps35 in yeast confers dominant-negative vacuolar proenzyme secretion and defective secretory proprotein processing. The mutant phenotype appears to be driven by hVps35 competing with endogenous yVps35, becoming incorporated into defective retromer complexes and causing proteasomal degradation of endogenous Vps26 and Vps29. Increased expression of yVps35 displaces some hVps35 to a 100 000 × g supernatant and suppresses the dominant-negative phenotype. Remarkably, mutation of the conserved R107W of hVps35 displaces some of the protein to the 100 000 × g supernatant, slows protein turnover and restores stability of Vps26p and Vps29p and completely abrogates dominant-negative trafficking behavior. We show that hVps35 coprecipitates Vps26, whereas the R107W mutant does not. In pancreatic beta cells, the R107W mutant shifts hVps35 from peripheral endosomes to a juxtanuclear compartment, affecting both mannose phosphate receptors and insulin. These data underscore importance of the Vps35 PRLYL motif in retromer subcomplex interactions and function.Keywords
This publication has 38 references indexed in Scilit:
- Structural Features of Vps35p Involved in Interaction with Other Subunits of the Retromer ComplexTraffic, 2007
- Wnt signaling establishes anteroposterior neuronal polarity and requires retromer inC. elegansDevelopment, 2006
- Plant Retromer, Localized to the Prevacuolar Compartment and Microvesicles inArabidopsis, May Interact with Vacuolar Sorting ReceptorsPlant Cell, 2006
- Retrieval and Reuse of Pituitary Secretory GranuleProteinsPublished by Elsevier ,2005
- Vps29 has a phosphoesterase fold that acts as a protein interaction scaffold for retromer assemblyNature Structural & Molecular Biology, 2005
- Golgi-to-Late Endosome Trafficking of the Yeast Pheromone Processing Enzyme Ste13p Is Regulated by a Phosphorylation Site in its Cytosolic DomainMolecular Biology of the Cell, 2005
- Identification of the Functional Domains of Yeast Sorting Nexins Vps5p and Vps17pMolecular Biology of the Cell, 2002
- Human Homologues of Yeast Vacuolar Protein Sorting 29 and 35Biochemical and Biophysical Research Communications, 2000
- Identification of Routing Determinants in the Cytosolic Domain of a Secretory Granule-associated Integral Membrane ProteinPublished by Elsevier ,1996
- Maturation of the yeast plasma membrane [H+]ATPase involves phosphorylation during intracellular transport.The Journal of cell biology, 1991