High-Throughput Synthesis and Analysis of Intact Glycoproteins Using SAMDI-MS.
José-Marc TechnerWeston KightlingerLiang LinJasmine HersheweAshvita RameshMatthew P DeLisaMichael C JewettMilan MrksichPublished in: Analytical chemistry (2020)
High-throughput quantification of the post-translational modification of many individual protein samples is challenging with current label-based methods. This paper demonstrates an efficient method that addresses this gap by combining Escherichia coli-based cell-free protein synthesis (CFPS) and self-assembled monolayers for matrix-assisted laser desorption/ionization mass spectrometry (SAMDI-MS) to analyze intact proteins. This high-throughput approach begins with polyhistidine-tagged protein substrates expressed from linear DNA templates by CFPS. Here, we synthesized an 87-member library of the E. coli Immunity Protein 7 (Im7) containing an acceptor sequence optimized for glycosylation by the Actinobacillus pleuropneumoniae N-glycosyltransferase (NGT) at every possible position along the protein backbone. These protein substrates were individually treated with NGT and then selectively immobilized to self-assembled monolayers presenting nickel-nitrilotriacetic acid (Ni-NTA) complexes before final analysis by SAMDI-MS to quantify the conversion of substrate to glycoprotein. This method offers new opportunities for rapid synthesis and quantitative evaluation of intact glycoproteins.
Keyphrases
- high throughput
- mass spectrometry
- cell free
- escherichia coli
- amino acid
- protein protein
- multiple sclerosis
- ms ms
- binding protein
- high resolution
- circulating tumor
- liquid chromatography
- pseudomonas aeruginosa
- single molecule
- case report
- high performance liquid chromatography
- gas chromatography
- simultaneous determination
- quantum dots
- solar cells
- nucleic acid
- loop mediated isothermal amplification