Simultaneous analysis of enzyme structure and activity by kinetic capillary electrophoresis-MS.
Gleb G MironovChristopher M ClouthierAbdullah AkbarJeffrey W KeillorMaxim V BerezovskiPublished in: Nature chemical biology (2016)
To enable the detection of protein conformational isomers, their enzymatic activity and their inhibition in a single experiment, we developed a method based on kinetic capillary electrophoresis coupled on-line with UV detection and ion mobility mass spectrometry (CE-UV-IM-MS). Kinetic CE-UV separated protein conformers and monitored their interconversion dynamics in solution. Ion mobility mass spectrometry analyzed the conformer sizes, exact molecular weights, and structures of an enzyme and of its substrates, inhibitors and corresponding products. This coupled CE-UV-IM-MS system allowed the simultaneous, real-time observation of the effect of small-molecule inhibitors on both the conformational distribution and enzymatic activity of the human tissue transglutaminase TG2. By expanding mass spectrometry profiling of enzymatic reactions beyond proteins and substrates to include protein dynamics, CE-UV-IM-MS opens a new avenue for the modulation and regulation of cellular functions, drug development and protein engineering.
Keyphrases
- mass spectrometry
- capillary electrophoresis
- liquid chromatography
- small molecule
- protein protein
- gas chromatography
- high performance liquid chromatography
- high resolution
- hydrogen peroxide
- amino acid
- molecular dynamics
- binding protein
- molecular dynamics simulations
- endothelial cells
- multiple sclerosis
- ms ms
- tandem mass spectrometry
- real time pcr
- aqueous solution
- simultaneous determination
- quantum dots