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Utilizing Time-Resolved Protein-Induced Fluorescence Enhancement to Identify Stable Local Conformations One α-Synuclein Monomer at a Time
Published on: May 30, 2021
Determination of α-Synuclein Protein Interactions by μMap Photoproximity Labeling
Marshall G Lougee1, Grace S H Park2, Hee Jong Kim2
1Department of Chemistry, School of Arts and Sciences, University of Pennsylvania, 231 South 34th Street, Philadelphia, Pennsylvania 19104, United States.
None:
Fibrillar aggregates of the natively disordered protein α-synuclein (αS) are hallmarks of Parkinson's disease and related neurodegenerative disorders termed synucleinopathies. Here, we used micromap (μMap) photoproximity labeling to determine the interactomes of αS monomers and fibrils in mouse brain lysate to better understand both the loss of healthy function and gain of toxic function aspects of synucleinopathies. Several αS variants were synthesized and characterized, showing that the small size (1 kDa) of the Ir catalyst attached through a Cys-maleimide linkage makes it minimally perturbing to αS, with a narrow labeling radius that allows one to identify interactome differences between different regions of αS. Monomer and fibril interactomes were compared to each other and to previous proximity labeling data sets for validation, and several examples of further investigations are demonstrated, including Western blotting, affinity pulldowns, fluorescence and super-resolution microscopy, and μMap in primary neurons.

