Angewandte Chemie International Edition · 2015 · 160 citations · 27 references
Drug TargetChemical BiologyCysteine ProfilingEthynyl Benziodoxolone ReagentsProteomic TechnologyMedicinal ChemistryBiomarker DiscoveryProteomicsSmall Molecule LibraryBiochemistryBiomarker TargetProteome‐wide ProfilingPharmacologyCysteine ResiduesBiomolecular EngineeringNatural SciencesProteomic ProfilingMedicineSmall MoleculesDrug Discovery
In this study, we present a highly efficient method for proteomic profiling of cysteine residues in complex proteomes and in living cells. Our method is based on alkynylation of cysteines in complex proteomes using a "clickable" alkynyl benziodoxolone bearing an azide group. This reaction proceeds fast, under mild physiological conditions, and with a very high degree of chemoselectivity. The formed azide-capped alkynyl-cysteine adducts are readily detectable by LC-MS/MS, and can be further functionalized with TAMRA or biotin alkyne via CuAAC. We demonstrate the utility of alkynyl benziodoxolones for chemical proteomics applications by identifying the proteomic targets of curcumin, a diarylheptanoid natural product that was and still is part of multiple human clinical trials as anticancer agent. Our results demonstrate that curcumin covalently modifies several key players of cellular signaling and metabolism, most notably the enzyme casein kinase I gamma. We anticipate that this new method for cysteine profiling will find broad application in chemical proteomics and drug discovery.
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Quantitative reactivity profiling predicts functional cysteines in proteomes
Eranthie Weerapana, Chu Wang, Gabriel M. Simon et al. · Nature · 2010 · 1.7K citations · Full text