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Updated: Jun 25, 2025

Growth-based Determination and Biochemical Confirmation of Genetic Requirements for Protein Degradation in Saccharomyces cerevisiae
Published on: February 16, 2015
Proteasome regulation of petite-negativity in fission yeast
Katie Lin Amberg1, Lyrica Hao1, Susanne Cranz-Mileva1
1Department of Molecular Biology and Biochemistry, Division of Life Sciences Rutgers, the State University of new Jersey.
Abstract:
Mitochondria carry out essential functions in eukaryotic cells. The mitochondrial genome encodes factors critical to support oxidative phosphorylation and mitochondrial protein import necessary for these functions. However, organisms like budding yeast can readily lose their mitochondrial genome, yielding respiration-deficient petite mutants. The fission yeast Schizosaccharomyces pombe is petite-negative, but some nuclear mutations enable the loss of its mitochondrial genome. Here, we characterize the classical petite-positive mutation ptp1-1 as a loss of function allele of the proteasome 19S regulatory subunit component mts4/rpn1, involved in the Ubiquitin-dependent degradation pathway. The mutation results in an altered oxidative stress response, with increased levels of oxidized glutathione, and increased levels of mitochondrial and cytoplasmic chaperones. We propose that Ubiquitin-proteasome regulation of chaperones involved in the Unfolded Protein Response and mitochondrial protein import underlies petite-negativity in fission yeast.
Insights
The petite-positive mutation ptp1-1 in fission yeast disrupts the Ubiquitin-proteasome system, affecting mitochondrial function and stress response. This study reveals a link between proteasome regulation and mitochondrial genome stability.
Area of Science:
- Cell Biology
- Genetics
- Biochemistry
Background:
- Mitochondria are vital for eukaryotic cell function, with their genome encoding essential proteins.
- While budding yeast readily forms petite mutants (losing mitochondrial DNA), fission yeast is petite-negative, resisting mitochondrial genome loss.
- Certain nuclear mutations can override this petite-negativity in fission yeast.
Conclusions:
- The Ubiquitin-proteasome system regulates chaperones involved in the Unfolded Protein Response and mitochondrial protein import.
- This regulation is proposed to be a key mechanism underlying petite-negativity in fission yeast.
- Impaired proteasome function can lead to mitochondrial genome instability.
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