Back to Search
Start Over
Partially oxidized DJ-1 inhibits α-synuclein nucleation and remodels mature α-synuclein fibrils in vitro.
- Source :
-
Communications biology [Commun Biol] 2019 Oct 30; Vol. 2, pp. 395. Date of Electronic Publication: 2019 Oct 30 (Print Publication: 2019). - Publication Year :
- 2019
-
Abstract
- DJ-1 is a deglycase enzyme which exhibits a redox-sensitive chaperone-like activity. The partially oxidized state of DJ-1 is active in inhibiting the aggregation of α-synuclein, a key protein associated with Parkinson's disease. The underlying molecular mechanism behind α-synuclein aggregation inhibition remains unknown. Here we report that the partially oxidized DJ-1 possesses an adhesive surface which sequesters α-synuclein monomers and blocks the early stages of α-synuclein aggregation and also restricts the elongation of α-synuclein fibrils. DJ-1 remodels mature α-synuclein fibrils into heterogeneous toxic oligomeric species. The remodeled fibers show loose surface topology due to a decrease in elastic modulus and disrupt membrane architecture, internalize easily and induce aberrant nitric oxide release. Our results provide a mechanism by which partially oxidized DJ-1 counteracts α-synuclein aggregation at initial stages of aggregation and provide evidence of a deleterious effect of remodeled α-synuclein species generated by partially oxidized DJ-1.<br />Competing Interests: Competing interestsThe authors declare no competing interests.<br /> (© The Author(s) 2019.)
- Subjects :
- Adhesiveness
Amyloid chemistry
Amyloid metabolism
Cell Line
Elastic Modulus
Humans
In Vitro Techniques
Microscopy, Atomic Force
Models, Molecular
Molecular Chaperones chemistry
Molecular Chaperones metabolism
Neurotoxins chemistry
Neurotoxins metabolism
Oxidation-Reduction
Parkinson Disease etiology
Parkinson Disease metabolism
Protein Aggregates
Protein Deglycase DJ-1 chemistry
alpha-Synuclein chemistry
Protein Deglycase DJ-1 metabolism
alpha-Synuclein metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 2399-3642
- Volume :
- 2
- Database :
- MEDLINE
- Journal :
- Communications biology
- Publication Type :
- Academic Journal
- Accession number :
- 31701024
- Full Text :
- https://doi.org/10.1038/s42003-019-0644-7