Abstract

Rpn6p is a component of the lid of the 26 S proteasome. We isolated and analyzed two temperature-sensitive rpn6 mutants in the yeast, Saccharomyces cerevisiae. Both mutants showed defects in protein degradation in vivo. However, the affinity-purified 26 S proteasome of the rpn6 mutants grown at the permissive temperature degraded polyubiquitinated Sic1p efficiently, even at a higher temperature. Interestingly, their enzyme activity was even higher at a higher temperature, indicating that once made mutant proteasomes are stable and have little defect in the proteolytic function. These results suggest that the deficiency in protein degradation observed in vivo is rather due to a defect in the assembly of a holoenzyme at the restrictive temperature. Indeed, both rpn6 mutants grown at the restrictive temperature were defective in assembling the 26 S proteasome. A striking feature of the rpn6 mutants at the restrictive temperature was that there appeared a protein complex composed of only four of the nine lid components, Rpn5p, Rpn8p, Rpn9p, and Rpn11p. Altogether, we conclude that Rpn6p is essential for the integrity/assembly of the lid in the sense that it is necessary for the incorporation of Rpn3p, Rpn7p, Rpn12p, and Sem1p (Rpn15p) into the lid, thereby playing an essential role in the proper function of the 26 S proteasome.

Highlights

  • The 26 S proteasome is a multicatalytic protein complex that is highly conserved among eukaryotic organisms

  • RPN6 is an essential gene in the yeast Saccharomyces cerevisiae and is a counterpart of the human proteasome subunit S9/p44.5 [47]

  • The rpn6-1 mutation occurred in the stop codon of the RPN6 ORF, creating a C-terminal extension consisting of 20 amino acid residues

Read more

Summary

TABLE I Yeast strains used in this study

MATa leu trp his ura ssd can ade MAT␣ leu trp his ura ssd can ade MATa ura his200 ade2–101lys801 trp901 leu 112 gal542 gal538 LYS2:UASGAL1-TATAGAL1-HIS3 URA3::UASGAL4 17mer-TATACYC1-lacZ MAT␣ leu trp his ura ssd can ade rpn6::rpn6–2FL-URA3 MAT␣ leu trp his ura ssd can ade rpn6::rpn6–2LP-URA3 MAT␣ leu trp his ura ssd can ade rpn6::rpn6–1-URA3 YNS1 pre1::PRE1–3ϫFLAG-HIS3 YNS1 rpn1::RPN1–3ϫFLAG-HIS3 YNS1 rpn11::RPN11–3ϫFLAG-HIS3 MAT␣ leu trp his ura ssd can ade rpn6::rpn6–2-URA3 YNK4 rpn11::RPN11–3ϫFLAG-HIS3 MATa leu trp his ura ssd can ade pre1::PRE1–3ϫFLAG-HIS3 MATa leu trp his ura ssd can ade rpn1::RPN1–3ϫFLAG-HIS3 MATa leu trp his ura ssd can ade rpn11::RPN11–3ϫFLAG-HIS3 MATa leu trp his ura ssd can ade2 ⌬rpn10-KanMX rpn11::RPN11–3ϫFLAG-HIS3

Our stock Our stock Stratagene
EXPERIMENTAL PROCEDURES
TABLE II Plasmids used in this study
RESULTS
DISCUSSION
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call