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Single-Molecule Two-Color Coincidence Detection of Unlabeled alpha-Synuclein Aggregates.


ABSTRACT: Protein misfolding and aggregation into oligomeric and fibrillar structures is a common feature of many neurogenerative disorders. Single-molecule techniques have enabled characterization of these lowly abundant, highly heterogeneous protein aggregates, previously inaccessible using ensemble averaging techniques. However, they usually rely on the use of recombinantly-expressed labeled protein, or on the addition of amyloid stains that are not protein-specific. To circumvent these challenges, we have made use of a high affinity antibody labeled with orthogonal fluorophores combined with fast-flow microfluidics and single-molecule confocal microscopy to specifically detect α-synuclein, the protein associated with Parkinson's disease. We used this approach to determine the number and size of α-synuclein aggregates down to picomolar concentrations in biologically relevant samples.

SUBMITTER: Chappard A 

PROVIDER: S-EPMC10952349 | biostudies-literature | 2023 Apr

REPOSITORIES: biostudies-literature

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Single-Molecule Two-Color Coincidence Detection of Unlabeled alpha-Synuclein Aggregates.

Chappard Alexandre A   Leighton Craig C   Saleeb Rebecca S RS   Jeacock Kiani K   Ball Sarah R SR   Morris Katie K   Kantelberg Owen O   Lee Ji-Eun JE   Zacco Elsa E   Pastore Annalisa A   Sunde Margaret M   Clarke David J DJ   Downey Patrick P   Kunath Tilo T   Horrocks Mathew H MH  

Angewandte Chemie (Weinheim an der Bergstrasse, Germany) 20230228 15


Protein misfolding and aggregation into oligomeric and fibrillar structures is a common feature of many neurogenerative disorders. Single-molecule techniques have enabled characterization of these lowly abundant, highly heterogeneous protein aggregates, previously inaccessible using ensemble averaging techniques. However, they usually rely on the use of recombinantly-expressed labeled protein, or on the addition of amyloid stains that are not protein-specific. To circumvent these challenges, we  ...[more]

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