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Chemoenzymatic Synthesis of Bifunctional Polyubiquitin Substrates for Monitoring Ubiquitin Chain Remodeling
Author(s) -
Trang Vivian H.,
Rodgers Margaret L.,
Boyle Kevin J.,
Hoskins Aaron A.,
Strieter Eric R.
Publication year - 2014
Publication title -
chembiochem
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.05
H-Index - 126
eISSN - 1439-7633
pISSN - 1439-4227
DOI - 10.1002/cbic.201402059
Subject(s) - deubiquitinating enzyme , ubiquitin , chemistry , biochemistry , ubiquitins , fluorophore , enzyme , ubiquitin conjugating enzyme , ubiquitin ligase , fluorescence , physics , quantum mechanics , gene
Covalent attachment of ubiquitin to target proteins is one of the most pervasive post‐translational modifications in eukaryotes. Target proteins are often modified with polymeric ubiquitin chains of defined lengths and linkages that may further undergo dynamic changes in composition in response to cellular signals. Biochemical characterization of the enzymes responsible for building and destroying ubiquitin chains is often thwarted by the lack of methods for preparation of the appropriate substrates containing probes for biochemical or biophysical studies. We have discovered that a yeast ubiquitin C‐terminal hydrolase (Yuh1) also catalyzes transamidation reactions that can be exploited to prepare site‐specifically modified polyubiquitin chains produced by thiol‐ene chemistry. We have used this chemoenzymatic approach to prepare dual‐functionalized ubiquitin chains containing fluorophore and biotin modifications. These dual‐functionalized ubiquitin chains enabled the first real‐time assay of ubiquitin chain disassembly by a human deubiquitinase (DUB) enzyme by single molecule fluorescence microscopy. In summary, this work provides a powerful new tool for elucidating the mechanisms of DUBs and other ubiquitin processing enzymes.

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