Authors
Mike Filius, Carlos van Wee, Raman, de Lannoy, Ilja Westerlaken, Zeshi Li, Sung Hyun Kim, Cecilia de Agrela Pinto, Yunfei Wu, Geert-Jan Boons, Martin Pabst, Dick de Ridder, Chirlmin Joo
Publication date
2024/2/13
Journal
Nature Nanotechnoloy
Issue
https://doi.org/10.1038/s41565-023-01598
Publisher
https://www.nature.com/articles/s41565-023-01598-7
Description
Proteins are the primary functional actors of the cell. While proteoform diversity is known to be highly biologically relevant, current protein analysis methods are of limited use for distinguishing proteoforms. Mass spectrometric methods, in particular, often provide only ambiguous information on post-translational modification sites, and sequences of co-existing modifications may not be resolved. Here we demonstrate fluorescence resonance energy transfer (FRET)-based single-molecule protein fingerprinting to map the location of individual amino acids and post-translational modifications within single full-length protein molecules. Our data show that both intrinsically disordered proteins and folded globular proteins can be fingerprinted with a subnanometer resolution, achieved by probing the amino acids one by one using single-molecule FRET via DNA exchange. This capability was demonstrated through the …
Total citations
Scholar articles
M Filius, R van Wee, C de Lannoy, I Westerlaken, Z Li… - Nature Nanotechnology, 2024