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Updated: May 10, 2026

Utilizing Time-Resolved Protein-Induced Fluorescence Enhancement to Identify Stable Local Conformations One α-Synuclein Monomer at a Time
Published on: May 30, 2021
Membrane bound α-synuclein is fully embedded in the lipid bilayer while segments with higher flexibility remain
Jonas Wietek1, Ivan Haralampiev, Aouefa Amoussouvi
1Department of Biology, Faculty of Mathematics and Natural Sciences I, Humboldt University Berlin, Invalidenstr. 42, 10115 Berlin, Germany.
Abstract:
Cellular pathways involving α-synuclein (αS) seem to be causative for development of Parkinson's disease. Interactions between αS and lipid membranes appear to be important for the physiological function of the protein and influence the pathological aggregation of αS leading to the formation of amyloid plaques. Upon membrane binding the unstructured αS folds into amphipathic helices. In our work we characterized the penetration depth and probed the local environment of Trp-residues introduced along the αS sequence. We could show that while the entire helix is well embedded in the lipid bilayer, segments with a shallower penetration and supposable higher flexibility exist.
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