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Updated: Dec 30, 2025

Evaluation of the Impact of Protein Aggregation on Cellular Oxidative Stress in Yeast
Published on: June 23, 2018
Aggregation of CAT tails blocks their degradation and causes proteotoxicity in S. cerevisiae
Cole S Sitron1, Joseph H Park1,2, Jenna M Giafaglione1
1Department of Biochemistry, Stanford University, Stanford, CA, United States of America.
Abstract:
The Ribosome-associated Quality Control (RQC) pathway co-translationally marks incomplete polypeptides from stalled translation with two signals that trigger their proteasome-mediated degradation. The E3 ligase Ltn1 adds ubiquitin and Rqc2 directs the large ribosomal subunit to append carboxy-terminal alanine and threonine residues (CAT tails). When excessive amounts of incomplete polypeptides evade Ltn1, CAT-tailed proteins accumulate and can self-associate into aggregates. CAT tail aggregation has been hypothesized to either protect cells by sequestering potentially toxic incomplete polypeptides or harm cells by disrupting protein homeostasis. To distinguish between these possibilities, we modulated CAT tail aggregation in Saccharomyces cerevisiae with genetic and chemical tools to analyze CAT tails in aggregated and un-aggregated states. We found that enhancing CAT tail aggregation induces proteotoxic stress and antagonizes degradation of CAT-tailed proteins, while inhibiting aggregation reverses these effects. Our findings suggest that CAT tail aggregation harms RQC-compromised cells and that preventing aggregation can mitigate this toxicity.
Insights
CAT tail aggregation in yeast harms cells by inducing proteotoxic stress and blocking degradation of incomplete proteins. Preventing aggregation mitigates this toxicity, suggesting a therapeutic target for protein homeostasis disorders.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- The Ribosome-associated Quality Control (RQC) pathway degrades incomplete polypeptides.
- Ltn1 ligase ubiquitinates, and Rqc2 adds CAT tails to stalled translation products.
- Accumulated CAT-tailed proteins can aggregate, with unclear cellular consequences.
Purpose of the Study:
- To investigate the role of CAT tail aggregation in cellular toxicity.
- To determine if CAT tail aggregation is protective or harmful.
Main Methods:
- Modulation of CAT tail aggregation using genetic and chemical tools in Saccharomyces cerevisiae.
- Analysis of CAT tails in aggregated and un-aggregated states.
- Assessment of proteotoxic stress and protein degradation.
Main Results:
- Enhanced CAT tail aggregation induced proteotoxic stress.
- Aggregation antagonized the degradation of CAT-tailed proteins.
- Inhibiting aggregation reversed these detrimental effects.
Conclusions:
- CAT tail aggregation is detrimental to RQC-compromised cells.
- Preventing aggregation can alleviate toxicity associated with incomplete polypeptides.
- Targeting CAT tail aggregation may offer therapeutic benefits for protein homeostasis diseases.
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