Retention of p63 in an ER-Golgi intermediate compartment depends on the presence of all three of its domains and on its ability to form oligomers.
Open Access
- 1 July 1994
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 126 (1) , 25-39
- https://doi.org/10.1083/jcb.126.1.25
Abstract
The type II membrane protein p63 is a resident protein of a membrane network interposed between rough ER and Golgi apparatus. To study the retention of p63, mutant forms were expressed in COS cells and the intracellular distribution determined by immunofluorescence microscopy. Investigation of chimeric constructs between p63 and the plasma membrane protein dipeptidylpeptidase IV showed that protein sequences from all three domains of the p63 protein are required to achieve complete intracellular retention. Mutational analysis of the 106-amino acid cytoplasmic tail of p63 revealed that the NH2-terminal 23 amino acids are necessary for retention. When p63 was solubilized with Triton X-100 and subjected to centrifugation at 100,000 g, it formed large, insoluble oligomers, particularly at neutral pH and below. A comparison of the behavior of wildtype and mutant p63 proteins in this assay revealed a perfect correlation between the formation of large oligomers and correct intracellular retention. These results suggest that self-association may be a major mechanism by which p63 is retained between the rough ER and the Golgi apparatus.Keywords
This publication has 50 references indexed in Scilit:
- The transmembrane domain of N-glucosaminyltransferase I contains a Golgi retention signal.Journal of Biological Chemistry, 1992
- The Golgi sorting domain of coronavirus E1 proteinJournal of Cell Science, 1991
- Signals for retention of transmembrane proteins in the endoplasmic reticulum studied with CD4 truncation mutants.Proceedings of the National Academy of Sciences, 1991
- β-COP, a 110 kd protein associated with non-clathrin-coated vesicles and the golgi complex, shows homology to β-adaptinCell, 1991
- Identification of an intermediate compartment involved in protein transport from endoplasmic reticulum to Golgi apparatus.1990
- Localization of low molecular weight GTP binding proteins to exocytic and endocytic compartmentsCell, 1990
- Short cytoplasmic sequences serve as retention signals for transmembrane proteins in the endoplasmic reticulumCell, 1989
- cDNA cloning for a bile canaliculus domain-specific membrane glycoprotein of rat hepatocytes.Proceedings of the National Academy of Sciences, 1987
- Expression and intracellular transport of microvillus membrane hydrolases in human intestinal epithelial cells.The Journal of cell biology, 1985
- Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Nature, 1970