Proteoform-Specific Protein Binding of Small Molecules in Complex Matrices.
Geuncheol GilPan MaoBharathi AvulaZulfiqar AliAmar G ChittiboyinaIkhlas A KhanLarry A WalkerDaojing WangPublished in: ACS chemical biology (2016)
Characterizing the specific binding between protein targets and small molecules is critically important for drug discovery. Conventional assays require isolation and purification of small molecules from complex matrices through multistep chromatographic fractionation, which may alter their original bioactivity. Most proteins undergo posttranslational modification, and only certain proteoforms have the right conformation with accessible domains and available residues for small molecule binding. We developed a top-down mass spectrometry (MS) centric workflow for rapid evaluation of the bioactivity of crude botanical extracts after a one-step reaction. Our assay distinguished covalent from noncovalent binding and mapped the residue for covalent binding between bioactive constituents and specific proteoforms of the target protein. We augmented our approach with a nanoflow liquid chromatography-selected reaction monitoring (SRM)-MS assay for simultaneous identification and label-free multiplex quantitation of small molecules in the crude botanical extracts. Our assay was validated for various proteoforms of human serum albumin, which plays a key role in pharmacokinetics of small molecules in vivo. We demonstrated the utility of our proteoform-specific assay for evaluating thymoquinone in crude botanical extracts, studying its pharmacokinetics in human blood, and interpreting its toxicity to human breast cancer cells in tissue culture.
Keyphrases
- mass spectrometry
- liquid chromatography
- high throughput
- binding protein
- small molecule
- drug discovery
- protein protein
- endothelial cells
- ms ms
- label free
- dna binding
- multiple sclerosis
- breast cancer cells
- high performance liquid chromatography
- liquid chromatography tandem mass spectrometry
- tandem mass spectrometry
- high resolution mass spectrometry
- capillary electrophoresis
- amino acid
- high resolution
- human serum albumin
- induced pluripotent stem cells
- gas chromatography
- molecular dynamics simulations
- virtual reality
- transcription factor