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Updated: Mar 17, 2026

High-throughput Screening for Protein-based Inheritance in S. cerevisiae
Published on: August 8, 2017
The evolutionary scope and neurological disease linkage of yeast-prion-like proteins in humans
1Department of Biology, McGill University, Montreal, QC, Canada.
Background:
Prions are proteinaceous particles that propagate alternative protein conformations/states to further copies of the same proteins, and are transmitted from cell-to-cell, and organism-to-organism. Prions are usually made of the beta-sheet rich assemblies termed amyloid. The original prion protein PrP causes devastating neurodegenerative disorders in humans and other mammals. In the yeast Saccharomyces cerevisiae, many prion-forming proteins have been observed; a prominent feature of these proteins is an intrinsically disordered domain rich in glutamine (Q) and asparagine (N) residues. Several human proteins that are yeast-prion-like, in particular those with poly-glutamine (poly-Q) expansions, have been experimentally implicated in human neurodegenerative diseases.
Results:
Here, we have constructed a comprehensive list of human yeast-prion-like proteins that are linked to human neurological disease. Surprisingly, different methods to annotate yeast-prion-like proteins in humans have limited intersection. However, independent of annotation method, we find that human yeast-prion-like proteins as a group have a statistically significant genetic linkage to neurological disease, that is caused specifically by linkage to neurodegenerative diseases. This is despite: (i) no especially high expression of yeast-prion-like proteins in the central nervous system, or (ii) no general enrichment of intrinsically disordered proteins in neurological/neurodegenerative diseases. Cytoskeletal proteins are significantly overrepresented in the set of human yeast-prion-like neurological proteins. Whether involved in neurological pathomechanisms or not, yeast-prion-like proteins in humans have very limited conservation outside of Deuterostomia (< ~10 %) with only a handful having prion-like character in both human and S. cerevisiae. The only such protein with a disease linkage is PUB1/TIA1, which functions as a stress granule component. Thus, the yeast-prion-like character of proteins linked to neurodegenerative diseases has not been conserved over the deep evolutionary time since the last common ancestor of yeasts and humans.
Conclusion:
Our results provide a comprehensive picture of yeast-prion-like proteins in humans and contribute to the strategic basis for experimental investigation of the link between yeast-prion-like protein character and neurological disease.
Reviewers:
Reviewed by Istvan Simon and Alexander Schleiffer. For the full reviews, please go to the Reviewers' comments section.
Insights
Human yeast-prion-like proteins are linked to neurodegenerative diseases, despite limited conservation and no specific enrichment in the central nervous system. This study identifies key proteins for future research into prion-like protein roles in neurological disorders.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Prions are misfolded proteins causing neurodegenerative diseases.
- Yeast prion-like proteins, rich in glutamine/asparagine, are implicated in human neurological disorders, especially poly-glutamine diseases.
Purpose of the Study:
- To compile a comprehensive list of human yeast-prion-like proteins associated with neurological diseases.
- To investigate the genetic linkage and evolutionary conservation of these proteins.
Main Methods:
- Annotation of human proteins based on yeast-prion-like characteristics.
- Statistical analysis of genetic linkage to neurological diseases.
- Comparative analysis of protein conservation across species.
Main Results:
- Human yeast-prion-like proteins show significant genetic linkage to neurodegenerative diseases, irrespective of annotation method.
- Cytoskeletal proteins are overrepresented in this group.
- Prion-like character is poorly conserved evolutionarily, with few examples shared between humans and yeast.
Conclusions:
- Yeast-prion-like protein character linked to human neurodegenerative diseases is not conserved over deep evolutionary time.
- This study provides a foundation for further experimental research on yeast-prion-like proteins in neurological disease.
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