Direct evidence for ligand-induced internalization of the yeast alpha-factor pheromone receptor.
Open Access
- 1 November 1994
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 14 (11) , 7245-7255
- https://doi.org/10.1128/mcb.14.11.7245
Abstract
When Saccharomyces cerevisiae a cells bind alpha-factor pheromone, the ligand is internalized and its binding sites are lost from the cell surface in a time-, energy-, and temperature-dependent manner. This report presents direct evidence for alpha-factor-induced internalization of cell surface receptors. First, membrane fractionation on Renografin density gradients indicated that the alpha-factor receptors were predominantly found in the plasma membrane peak before alpha-factor treatment and then appeared in membranes of lesser buoyant density after alpha-factor exposure. Second, receptors were susceptible to cleavage by extracellular proteases before alpha-factor treatment and then became resistant to proteolysis after exposure to pheromone, consistent with the transit of receptors from the cell surface to an internal compartment. The median transit time in both assays was approximately 8 min. The ultimate target of the internalized receptors was identified as the vacuole, since the membranes containing internalized receptors cofractionated with vacuolar membranes, since the turnover of receptors was stimulated by alpha-factor exposure, and since receptor degradation was blocked in a pep4 mutant that is deficient for vacuolar proteases. The carboxy-terminal domain of the receptor that is required for ligand internalization was also found to be essential for endocytosis of the receptor. A receptor mutant, ste2-L236H, which is defective for pheromone response but capable of ligand internalization, was found to be proficient for receptor endocytosis. Hence, separate structural features of the receptor appear to specify its signal transduction and internalization activities.Keywords
This publication has 55 references indexed in Scilit:
- Signal-Dependent Membrane Protein Trafficking in the Endocytic PathwayAnnual Review of Cell Biology, 1993
- Conservation and reiteration of a kinase cascadeTrends in Genetics, 1993
- Identification of a novel sequence mediating regulated endocytosis of the G protein-coupled alpha-pheromone receptor in yeast.Molecular Biology of the Cell, 1993
- Sec61p and BiP directly facilitate polypeptide translocation into the ERCell, 1992
- In vivo topological analysis of Ste2, a yeast plasma membrane protein, by using beta-lactamase gene fusions.Molecular and Cellular Biology, 1991
- Response of Yeast Cells to a-Factor Pheromone: Topology of the Receptor and Identification of a Component of the Response PathwayCold Spring Harbor Symposia on Quantitative Biology, 1988
- KAR1, a gene required for function of both intranuclear and extranuclear microtubules in yeastCell, 1987
- Yeast cells recover from mating pheromone alpha factor-induced division arrest by desensitization in the absence of alpha factor destruction.Journal of Biological Chemistry, 1984
- Comparison of dose-response curves for alpha factor-induced cell division arrest, agglutination, and projection formation of yeast cells. Implication for the mechanism of alpha factor action.Journal of Biological Chemistry, 1983
- Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Nature, 1970