Eukaryotic 20S proteasome catalytic subunit propeptides prevent active site inactivation by N-terminal acetylation and promote particle assembly
Open Access
- 1 July 1999
- journal article
- research article
- Published by Springer Nature in The EMBO Journal
- Vol. 18 (13) , 3575-3585
- https://doi.org/10.1093/emboj/18.13.3575
Abstract
Proteins targeted for degradation by the ubiquitin‐proteasome system are degraded by the 26S proteasome. The core of this large protease is the 20S proteasome, a barrel‐shaped structure made of a stack of four heptameric rings. Of the 14 different subunits that make up the yeast 20S proteasome, three have proteolytic active sites: Doa3/β5, Pup1/β2 and Pre3/β1. Each of these subunits is synthesized with an N‐terminal propeptide that is autocatalytically cleaved during particle assembly. We show here that the propeptides have both common and distinct functions in proteasome biogenesis. Unlike the Doa3 propeptide, which is crucial for proteasome assembly, the Pre3 and Pup1 propeptides are dispensable for cell viability and proteasome formation. However, mutants lacking these propeptide‐encoding elements are defective for specific peptidase activities, are more sensitive to environmental stresses and have subtle defects in proteasome assembly. Unexpectedly, a critical function of the propeptide is the protection of the N‐terminal catalytic threonine residue against N α‐acetylation. For all three propeptide‐deleted subunits, activity of the affected catalytic center is fully restored when the Nat1‐Ard1 N α‐acetyltransferase is mutated. In addition to delineating a novel function for proteasome propeptides, these data provide the first biochemical evidence for the postulated participation of the α‐amino group in the proteasome catalytic mechanism.Keywords
This publication has 31 references indexed in Scilit:
- N-Terminal processing: the methionine aminopeptidase and Nα-acetyl transferase familiesTrends in Biochemical Sciences, 1998
- Conformational constraints for protein self-cleavage in the proteasomeJournal of Molecular Biology, 1998
- The Proteasome: Paradigm of a Self-Compartmentalizing ProteaseCell, 1998
- Identification of the yeast 20S proteasome catalytic centers and subunit interactions required for active-site formationProceedings of the National Academy of Sciences, 1997
- Autocatalytic Subunit Processing Couples Active Site Formation in the 20S Proteasome to Completion of AssemblyCell, 1996
- STRUCTURE AND FUNCTIONS OF THE 20S AND 26S PROTEASOMESAnnual Review of Biochemistry, 1996
- Genes encoded in the major histocompatibility complex affecting the generation of peptides for TAP transportEuropean Journal of Immunology, 1995
- Multiple ubiquitin-conjugating enzymes participate in the in vivo degradation of the yeast MATα2 repressorCell, 1993
- In Vivo Half-Life of a Protein Is a Function of Its Amino-Terminal ResidueScience, 1986
- A positive selection for mutants lacking orotidine-5′-phosphate decarboxylase activity in yeast: 5-fluoro-orotic acid resistanceMolecular Genetics and Genomics, 1984