Unbiased Mass Spectrometry Elucidation of the Targets and Mechanisms of Activity-Based Probes: A Case Study Involving Sulfonyl Fluorides.
Thomas E J ChavasMatthew John FuchterPeter A DiMaggioPublished in: ACS chemical biology (2018)
The elucidation of protein/drug interactions remains a major challenge in drug discovery. Liquid chromatography-tandem mass spectrometry has emerged as a tremendously powerful technology for this endeavor, but its full potential has yet to be realized owing in part to unresolved challenges in data analysis. Herein, we demonstrate how tandem mass spectrometry can comprehensively map small molecule/peptide adducts when combined with unconstrained sequencing. Using a published sulfonyl fluoride activity-based probe as a model system, this method enabled the discovery of several unreported sites of interaction with its target proteins. Crucially, this probe was found to undergo quantitative displacement and hydrolysis from the target protein's active site. Isotopic labeling experiments provided a mechanistic rationale for the observed hydrolysis that involves neighboring-group participation. A chemical biology tagging strategy that leverages the probe's observed lability was developed and shown to be compatible with the original small molecule inhibitor in discovery profiling experiments.
Keyphrases
- small molecule
- protein protein
- liquid chromatography tandem mass spectrometry
- simultaneous determination
- tandem mass spectrometry
- liquid chromatography
- solid phase extraction
- data analysis
- high performance liquid chromatography
- drug discovery
- mass spectrometry
- gas chromatography
- ultra high performance liquid chromatography
- living cells
- high resolution
- quantum dots
- single cell
- high resolution mass spectrometry
- fluorescent probe
- ms ms
- anaerobic digestion
- clinical trial
- amino acid
- drinking water
- systematic review
- single molecule
- physical activity
- binding protein
- human health