Subcellular localization of proteasomes and their regulatory complexes in mammalian cells
- 15 February 2000
- journal article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 346 (1) , 155-61
- https://doi.org/10.1042/0264-6021:3460155
Abstract
Proteasomes can exist in several different molecular forms in mammalian cells. The core 20S proteasome, containing the proteolytic sites, binds regulatory complexes at the ends of its cylindrical structure. Together with two 19S ATPase regulatory complexes it forms the 26S proteasome, which is involved in ubiquitin-dependent proteolysis. The 20S proteasome can also bind 11S regulatory complexes (REG, PA28) which play a role in antigen processing, as do the three variable gamma-interferon-inducible catalytic beta-subunits (e.g. LMP7). In the present study, we have investigated the subcellular distribution of the different forms of proteasomes using subunit specific antibodies. Both 20S proteasomes and their 19S regulatory complexes are found in nuclear, cytosolic and microsomal preparations isolated from rat liver. LMP7 was enriched approximately two-fold compared with core alpha-type proteasome subunits in the microsomal preparations. 20S proteasomes were more abundant than 26S proteasomes, both in liver and cultured cell lines. Interestingly, some significant differences were observed in the distribution of different subunits of the 19S regulatory complexes. S12, and to a lesser extent p45, were found to be relatively enriched in nuclear fractions from rat liver, and immunofluorescent labelling of cultured cells with anti-p45 antibodies showed stronger labelling in the nucleus than in the cytoplasm. The REG was found to be localized predominantly in the cytoplasm. Three- to six-fold increases in the level of REG were observed following gamma-interferon treatment of cultured cells but gamma-interferon had no obvious effect on its subcellular distribution. These results demonstrate that different regulatory complexes and subpopulations of proteasomes have different distributions within mammalian cells and, therefore, that the distribution is more complex than has been reported for yeast proteasomes.Keywords
This publication has 38 references indexed in Scilit:
- Simultaneous binding of PA28 and PA700 activators to 20 S proteasomesBiochemical Journal, 1998
- Proteasome activities decrease during dexamethasone-induced apoptosis of thymocytesBiochemical Journal, 1998
- Immunoproteasome Assembly: Cooperative Incorporation of Interferon γ (IFN-γ)–inducible SubunitsThe Journal of Experimental Medicine, 1998
- Endoplasmic reticulum degradation: reverse protein flow of no returnThe FASEB Journal, 1997
- Resistance to Diverse Drugs and Ultraviolet Light Conferred by Overexpression of a Novel Human 26 S Proteasome SubunitJournal of Biological Chemistry, 1997
- Catalytic Properties of 26 S and 20 S Proteasomes and Radiolabeling of MB1, LMP7, and C7 Subunits Associated with Trypsin-like and Chymotrypsin-like ActivitiesJournal of Biological Chemistry, 1997
- Characterization of Recombinant REGα, REGβ, and REGγ Proteasome ActivatorsJournal of Biological Chemistry, 1997
- Expression and subcellular localization of mouse 20S proteasome activator complex PA28FEBS Letters, 1997
- The 26S proteasome: subunits and functionsMolecular Biology Reports, 1997
- A Rapid and Sensitive Method for the Quantitation of Microgram Quantities of Protein Utilizing the Principle of Protein-Dye BindingAnalytical Biochemistry, 1976