Evolution of a mass spectrometry-grade protease with PTM-directed specificity.
Duc T TranValerie J CavettVuong Q DangHéctor L TorresBrian M PaegelPublished in: Proceedings of the National Academy of Sciences of the United States of America (2016)
Mapping posttranslational modifications (PTMs), which diversely modulate biological functions, represents a significant analytical challenge. The centerpiece technology for PTM site identification, mass spectrometry (MS), requires proteolytic cleavage in the vicinity of a PTM to yield peptides for sequencing. This requirement catalyzed our efforts to evolve MS-grade mutant PTM-directed proteases. Citrulline, a PTM implicated in epigenetic and immunological function, made an ideal first target, because citrullination eliminates arginyl tryptic sites. Bead-displayed trypsin mutant genes were translated in droplets, the mutant proteases were challenged to cleave bead-bound fluorogenic probes of citrulline-dependent proteolysis, and the resultant beads (1.3 million) were screened. The most promising mutant efficiently catalyzed citrulline-dependent peptide bond cleavage (kcat/KM = 6.9 × 105 M-1⋅s-1). The resulting C-terminally citrullinated peptides generated characteristic isotopic patterns in MALDI-TOF MS, and both a fragmentation product y1 ion corresponding to citrulline (176.1030 m/z) and diagnostic peak pairs in the extracted ion chromatograms of LC-MS/MS analysis. Using these signatures, we identified citrullination sites in protein arginine deiminase 4 (12 sites) and in fibrinogen (25 sites, two previously unknown). The unique mass spectral features of PTM-dependent proteolytic digest products promise a generalized PTM site-mapping strategy based on a toolbox of such mutant proteases, which are now accessible by laboratory evolution.
Keyphrases
- mass spectrometry
- liquid chromatography
- high resolution
- wild type
- gas chromatography
- capillary electrophoresis
- high performance liquid chromatography
- amino acid
- multiple sclerosis
- nitric oxide
- ms ms
- optical coherence tomography
- small molecule
- gene expression
- single cell
- big data
- tandem mass spectrometry
- single molecule
- simultaneous determination
- transition metal
- photodynamic therapy