Publication | Open Access
A Native Chemical Ligation Handle that Enables the Synthesis of Advanced Activity‐Based Probes: Diubiquitin as a Case Study
96
Citations
35
References
2014
Year
Complex Activity-based ProbesBioorganic ChemistryEngineeringProtein AssemblyMasked ElectrophileMolecular BiologyChemical BiologyProtein FoldingMolecular RecognitionBiochemistryDirected EvolutionBioconjugationBiomolecular InteractionBio-orthogonal ChemistryNatural SciencesSynthetic BiologyCase StudyProtein EngineeringActivity-based ProbesChemical Probe
We present the development of a native chemical ligation handle that also functions as a masked electrophile that can be liberated during synthesis when required. This handle can thus be used for the synthesis of complex activity-based probes. We describe the use of this handle in the generation of linkage-specific activity-based deubiquitylating enzyme probes that contain substrate context and closely mimic the native ubiquitin isopeptide linkage. We have generated activity-based probes based on all seven isopeptide-linked diubiquitin topoisomers and demonstrated their structural integrity and ability to label DUBs in a linkage-specific manner.
| Year | Citations | |
|---|---|---|
Page 1
Page 1