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It’s Time for Some “Site”-Seeing: Novel Tools to Monitor the Ubiquitin Landscape in Arabidopsis thaliana
Author(s) -
Alan Walton,
Elisabeth Stes,
Nicolas Cybulski,
Michiel Van Bel,
Sabrina Iñigo,
Astrid Nagels Durand,
Evy Timmerman,
Jefri Heyman,
Laurens Pauwels,
Lieven De Veylder,
Alain Goossens,
Ive De Smet,
Frederik Coppens,
Sofie Goormachtig,
Kris Gevaert
Publication year - 2016
Publication title -
the plant cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.324
H-Index - 341
eISSN - 1532-298X
pISSN - 1040-4651
DOI - 10.1105/tpc.15.00878
Subject(s) - ubiquitin , biology , f box protein , proteome , arabidopsis , arabidopsis thaliana , computational biology , ubiquitin ligase , microbiology and biotechnology , biochemistry , mutant , gene
Ubiquitination, the covalent binding of the small protein modifier ubiquitin to a target protein, is an important and frequently studied posttranslational protein modification. Multiple reports provide useful insights into the plant ubiquitinome, but mostly at the protein level without comprehensive site identification. Here, we implemented ubiquitin combined fractional diagonal chromatography (COFRADIC) for proteome-wide ubiquitination site mapping on Arabidopsis thaliana cell cultures. We identified 3009 sites on 1607 proteins, thereby greatly increasing the number of known ubiquitination sites in this model plant. Finally, The Ubiquitination Site tool (http://bioinformatics.psb.ugent.be/webtools/ubiquitin_viewer/) gives access to the obtained ubiquitination sites, not only to consult the ubiquitination status of a given protein, but also to conduct intricate experiments aiming to study the roles of specific ubiquitination events. Together with the antibodies recognizing the ubiquitin remnant motif, ubiquitin COFRADIC represents a powerful tool to resolve the ubiquitination maps of numerous cellular processes in plants.

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