Author
Listed:
- Jaime Santos
(Universitat Autònoma de Barcelona)
- Pablo Gracia
(University of Zaragoza)
- Susanna Navarro
(Universitat Autònoma de Barcelona)
- Samuel Peña-Díaz
(Universitat Autònoma de Barcelona)
- Jordi Pujols
(Universitat Autònoma de Barcelona)
- Nunilo Cremades
(University of Zaragoza)
- Irantzu Pallarès
(Universitat Autònoma de Barcelona)
- Salvador Ventura
(Universitat Autònoma de Barcelona)
Abstract
α-Synuclein aggregation is a key driver of neurodegeneration in Parkinson’s disease and related syndromes. Accordingly, obtaining a molecule that targets α-synuclein toxic assemblies with high affinity is a long-pursued objective. Here, we exploit the biophysical properties of toxic oligomers and amyloid fibrils to identify a family of α-helical peptides that bind to these α-synuclein species with low nanomolar affinity, without interfering with the monomeric functional protein. This activity is translated into a high anti-aggregation potency and the ability to abrogate oligomer-induced cell damage. Using a structure-guided search we identify a human peptide expressed in the brain and the gastrointestinal tract with analogous binding, anti-aggregation, and detoxifying properties. The chemical entities we describe here may represent a therapeutic avenue for the synucleinopathies and are promising tools to assist diagnosis by discriminating between native and toxic α-synuclein species.
Suggested Citation
Jaime Santos & Pablo Gracia & Susanna Navarro & Samuel Peña-Díaz & Jordi Pujols & Nunilo Cremades & Irantzu Pallarès & Salvador Ventura, 2021.
"α-Helical peptidic scaffolds to target α-synuclein toxic species with nanomolar affinity,"
Nature Communications, Nature, vol. 12(1), pages 1-14, December.
Handle:
RePEc:nat:natcom:v:12:y:2021:i:1:d:10.1038_s41467-021-24039-2
DOI: 10.1038/s41467-021-24039-2
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