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Trehalose prevents the formation of aggregates of mutant ataxin-3 and reduces soluble ataxin-3 protein levels in an SCA3 cell model.
- Source :
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Neuroscience . Sep2024, Vol. 555, p76-82. 7p. - Publication Year :
- 2024
-
Abstract
- • Trehalose at concentrations of 0.1–200 mM is safe in SCA3 cell models. • Trehalose decreases the formation of aggregates of mutant ataxin-3. • Trehalose reduces full-length ataxin-3 protein levels. • Trehalose holds therapeutic potential to treat SCA3 likely by its antioxidant activity. Spinocerebellar ataxia type 3 (SCA3) is a neurodegenerative disorder caused by mutant ataxin-3 with an abnormally expanded polyQ tract and is the most common dominantly inherited ataxia worldwide. There are no suitable therapeutic options for this disease. Autophagy, a defense mechanism against the toxic effects of aggregation-prone misfolded proteins, has been shown to have beneficial effects on neurodegenerative diseases. Thus, trehalose, which is an autophagy inducer, may have beneficial effects on SCA3. In the present study, we examined the effects of trehalose on an SCA3 cell model. After trehalose treatment, aggregate formation, soluble ataxin-3 protein levels and cell viability were evaluated in HEK293T cells overexpressing ataxin-3-15Q or ataxin-3-77Q. We also explored the mechanism by which trehalose affects autophagy and stress pathways. A filter trap assay showed that trehalose decreased the number of aggregates formed by mutant ataxin-3 containing an expanded polyQ tract. Western blot and Cell Counting Kit-8 (CCK-8) results demonstrated that trehalose also reduced the ataxin-3 protein levels and was safe for ataxin-3-expressing cells, respectively. Western blot and total antioxidant capacity assays suggested that trehalose had great therapeutic potential for treating SCA3, likely through its antioxidant activity. Our data indicate that trehalose plays a neuroprotective role in SCA3 by inhibiting the aggregation and reducing the protein level of ataxin-3, which is also known to protect against oxidative stress. These findings provide a new insight into the possibility of treating SCA3 with trehalose and highlight the importance of inducing autophagy in SCA3. [ABSTRACT FROM AUTHOR]
- Subjects :
- *OXIDANT status
*POISONS
*TREHALOSE
*SPINOCEREBELLAR ataxia
*CELL survival
Subjects
Details
- Language :
- English
- ISSN :
- 03064522
- Volume :
- 555
- Database :
- Academic Search Index
- Journal :
- Neuroscience
- Publication Type :
- Academic Journal
- Accession number :
- 179137395
- Full Text :
- https://doi.org/10.1016/j.neuroscience.2024.06.036