Resumo
Sirtuin genes have been associated with aging and are known to affect multiple cellular pathways. Sirtuin 2 was previously shown to modulate proteotoxicity associated with age-associated neurodegenerative disorders such as Alzheimer and Parkinson disease (PD). However, the precise molecular mechanisms involved remain unclear. Here, we provide mechanistic insight into the interplay between sirtuin 2 and α-synuclein, the major component of the pathognomonic protein inclusions in PD and other synucleinopathies. We found that α-synuclein is acetylated on lysines 6 and 10 and that these residues are deacetylated by sirtuin 2. Genetic manipulation of sirtuin 2 levels in vitro and in vivo modulates the levels of α-synuclein acetylation, its aggregation, and autophagy. Strikingly, mutants blocking acetylation exacerbate α-synuclein toxicity in vivo, in the substantia nigra of rats. Our study identifies α-synuclein acetylation as a key regulatory mechanism governing α-synuclein aggregation and toxicity, demonstrating the potential therapeutic value of sirtuin 2 inhibition in synucleinopathies.
| Idioma original | ???core.languages.en_GB??? |
|---|---|
| Número do artigo | e2000374 |
| Revista | PLoS Biology |
| Volume | 15 |
| Número de emissão | 3 |
| DOIs | |
| Estado da publicação | ???researchoutput.status.published??? - 3 mar. 2017 |
| Publicado externamente | Sim |
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Este resultado contribui para o(s) seguinte(s) Objetivo(s) de Desenvolvimento Sustentável
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ODS 3 Boa saúde e bem-estar
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