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Evaluation of the Impact of Protein Aggregation on Cellular Oxidative Stress in Yeast
Published on: June 23, 2018
Comparative analysis of the intracellular responses to disease-related aggregation-prone proteins
Andre Melnik1, Valentina Cappelletti2, Federico Vaggi3
1Institute of Biochemistry, Department of Biology, ETH Zurich, CH-8093 Zurich, Switzerland.
Abstract:
Aggregation-prone proteins (APPs) have been implicated in numerous human diseases but the underlying mechanisms are incompletely understood. Here we comparatively analysed cellular responses to different APPs. Our study is based on a systematic proteomic and phosphoproteomic analysis of a set of yeast proteotoxicity models expressing different human disease-related APPs, which accumulate intracellular APP inclusions and exhibit impaired growth. Clustering and functional enrichment analyses of quantitative proteome-level data reveal that the cellular response to APP expression, including the chaperone response, is specific to the APP, and largely differs from the response to a more generalized proteotoxic insult such as heat shock. We further observe an intriguing association between the subcellular location of inclusions and the location of the cellular response, and provide a rich dataset for future mechanistic studies. Our data suggest that care should be taken when designing research models to study intracellular aggregation, since the cellular response depends markedly on the specific APP and the location of inclusions. Further, therapeutic approaches aimed at boosting protein quality control in protein aggregation diseases should be tailored to the subcellular location affected by inclusion formation. SIGNIFICANCE: We have examined the global cellular response, in terms of protein abundance and phosphorylation changes, to the expression of five human neurodegeneration-associated, aggregation-prone proteins (APPs) in a set of isogenic yeast models. Our results show that the cellular response to each APP is unique to that protein, is different from the response to thermal stress, and is associated with processes at the subcellular location of APP inclusion formation. These results further our understanding of how cells, in a model organism, respond to expression of APPs implicated in neurodegenerative diseases like Parkinson's, Alzheimer's, and ALS. They have implications for mechanisms of toxicity as well as of protective responses in the cell. The specificity of the response to each APP means that research models of these diseases should be tailored to the APP in question. The subcellular localization of the response suggest that therapeutic interventions should also be targeted within the cell.
Insights
Cellular responses to aggregation-prone proteins (APPs) are specific to each APP and differ from general stress responses. Therapeutic strategies for protein aggregation diseases should target the specific subcellular location of inclusions.
Area of Science:
- Cellular biology
- Proteomics
- Neuroscience
Background:
- Aggregation-prone proteins (APPs) are linked to various human diseases, but their mechanisms of toxicity remain unclear.
- Understanding cellular responses to APPs is crucial for developing effective treatments for neurodegenerative diseases.
Purpose of the Study:
- To comparatively analyze cellular responses to different APPs using proteomic and phosphoproteomic approaches.
- To investigate the specificity of cellular responses to individual APPs and their relationship with inclusion formation.
Main Methods:
- Systematic proteomic and phosphoproteomic analysis of yeast models expressing human disease-related APPs.
- Clustering and functional enrichment analyses of quantitative proteome-level data.
- Investigating the association between the subcellular location of inclusions and cellular responses.
Main Results:
- Cellular responses, including chaperone activity, are specific to each APP and distinct from generalized proteotoxic insults like heat shock.
- An association was observed between the subcellular localization of APP inclusions and the location of the cellular response.
- The study provides a comprehensive dataset for future mechanistic investigations into APP toxicity.
Conclusions:
- Cellular responses to APPs are highly specific to the protein and its inclusion location, differing significantly from generalized stress responses.
- Research models for studying intracellular aggregation should be tailored to the specific APP.
- Therapeutic interventions for protein aggregation diseases require targeting based on the affected subcellular location.

