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PMID: 9409540 Published · ppublish English Journal Article Review

Ubiquitin-dependent internalization and down-regulation of plasma membrane proteins.

Hicke L

Abstract

The modification of cytosolic proteins with polyubiquitin chains targets them for recognition and degradation by the multisubunit proteolytic particle, the 26S proteasome. Membrane proteins are also substrates for ubiquitination. Integral membrane proteins of the endoplasmic reticulum are ubiquitinated and destroyed by the proteasome. However, it has been shown recently that the ubiquitination of Saccharomyces cerevisiae plasma membrane proteins signals their degradation by the proteolytic system in the lysosome-like vacuole. Ubiquitination of several different classes of cell surface proteins serves as a signal for their entry into the endocytic pathway; this leads to their transport to the vacuole, where they are permanently inactivated by degradation. In yeast, ubiquitin has been implicated as an internalization signal for most, if not all, endogenous plasma membrane proteins that are known to be endocytosed. Ubiquitin-dependent internalization has been best characterized for two proteins: the mating pheromone alpha-factor receptor and the uracil permease. Some mammalian cell surface receptors are also ubiquitinated at the plasma membrane. Ubiquitination machinery is required for ligand-induced endocytosis of the growth hormone receptor, suggesting that ubiquitin-dependent endocytosis and sorting is also an important regulatory process in mammalian cells. Mammalian receptors may also be down-regulated through the degradation of their cytosolic domains by a proteasome-dependent pathway.

MeSH Terms
Animals Cell Membrane/metabolism Fungal Proteins/metabolism Humans In Vitro Techniques Mammals Membrane Proteins/metabolism Membrane Transport Proteins/metabolism Nucleotide Transport Proteins Phosphorylation Receptors, Growth Factor/metabolism Receptors, Mating Factor Receptors, Peptide/metabolism Saccharomyces cerevisiae/metabolism Saccharomyces cerevisiae Proteins Signal Transduction Transcription Factors Ubiquitins/metabolism
Chemicals
FUR4 protein, S cerevisiae Fungal Proteins Membrane Proteins Membrane Transport Proteins Nucleotide Transport Proteins Receptors, Growth Factor Receptors, Mating Factor Receptors, Peptide Saccharomyces cerevisiae Proteins Transcription Factors Ubiquitins
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Hicke L
Department of Biochemistry, Molecular Biology, and Cell Biology, Northwestern University, Evanston, Illinois 60208-3500, USA.
Article Info
Journal
FASEB journal : official publication of the Federation of American Societies for Experimental Biology
Abbr.
FASEB J
ISSN
0892-6638
Published
1997-12-00
Pages
1215-26
Language
English
Region
United States
NLM ID
8804484
Subset
IM
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