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Abstract / Description of output
Autolysosomal dysfunction and unstable microtubules are hallmarks of chronic neurodegenerative diseases associated with misfolded proteins. Investigation of
impaired protein quality control and clearance systems could therefore provide an important avenue for intervention. To investigate this we have used a highly controlled model for protein aggregation, an in vitro prion system. Here we report that prion aggregates traffic via autolysosomes in the cytoplasm. Treatment with the natural polyamine spermine clears aggregates by enhancing autolysosomal flux. We demonstrated this by blocking the formation of mature autophagosomes resulting in accumulation of prion aggregates in the cytoplasm. Further we investigated the mechanism of spermine’s mode of action and we demonstrate that spermine increases the acetylation of microtubules, which is known to facilitate retrograde transport of autophagosomes from the cellular periphery to lysosomes located near the nucleus. We further report that spermine facilitates selective autophagic degradation of prion aggregates by binding to microtubule protein Tubb6. This is the first report in which spermine and the pathways regulated by it are applied as a novel approach towards clearance of misfolded prion protein and we suggest that this may have important implication for the broader family of protein misfolding diseases.
impaired protein quality control and clearance systems could therefore provide an important avenue for intervention. To investigate this we have used a highly controlled model for protein aggregation, an in vitro prion system. Here we report that prion aggregates traffic via autolysosomes in the cytoplasm. Treatment with the natural polyamine spermine clears aggregates by enhancing autolysosomal flux. We demonstrated this by blocking the formation of mature autophagosomes resulting in accumulation of prion aggregates in the cytoplasm. Further we investigated the mechanism of spermine’s mode of action and we demonstrate that spermine increases the acetylation of microtubules, which is known to facilitate retrograde transport of autophagosomes from the cellular periphery to lysosomes located near the nucleus. We further report that spermine facilitates selective autophagic degradation of prion aggregates by binding to microtubule protein Tubb6. This is the first report in which spermine and the pathways regulated by it are applied as a novel approach towards clearance of misfolded prion protein and we suggest that this may have important implication for the broader family of protein misfolding diseases.
Original language | English |
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Article number | 10004 |
Journal | Scientific Reports |
Volume | 8 |
Issue number | 1 |
Early online date | 3 Jul 2018 |
DOIs | |
Publication status | E-pub ahead of print - 3 Jul 2018 |
Keywords / Materials (for Non-textual outputs)
- Spermine
- autophagy
- protein aggregates
- tubulins
- retrograde transport
- prion
Fingerprint
Dive into the research topics of 'Spermine increases acetylation of tubulins and facilitates autophagic degradation of prion aggregates.'. Together they form a unique fingerprint.Projects
- 2 Finished
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Livestock neurobiology
Gill, A., Barron, R., Beard, P., Brunton, P., Goldmann, W., Hume, D., Hunter, N., Lawrence, A., Mabbott, N., Manson, J., McColl, B., Meddle, S. & Wishart, T.
1/04/12 → 31/03/17
Project: Research
Profiles
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Abigail Diack
- Royal (Dick) School of Veterinary Studies - Research Operations Manager
Person: Academic: Research Active
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