Analysis of Protein Glycosylation after Rapid Digestion Using Protease-Containing Membranes in Spin Columns.
Weikai CaoMerlin L BrueningPublished in: Journal of the American Society for Mass Spectrometry (2023)
Glycosylation is an important protein post-translational modification that plays a pivotal role in the bioactivity of therapeutic proteins and in the infectivity of viral proteins. Liquid chromatography with tandem mass spectrometry readily identifies protein glycans with site specificity. However, the overnight incubation used in conventional in-solution proteolysis leads to high turnaround times for glycosylation analysis, particularly when sequential in-solution digestions are needed for site-specific glycan identification. Using bovine fetuin as a model glycoprotein, this work first shows that in-membrane digestion in ∼3 min yields similar glycan identification and quantitation when compared to overnight in-solution digestion. Protease-containing membranes in a spin column enable digestion of therapeutic proteins (trastuzumab and erythropoietin) and a viral protein (SARS-CoV-2 receptor binding domain) in ∼30 s. Glycan identification is similar after in-solution and in-membrane digestion, and limited in-membrane digestion enhances the identification of high-mannose glycans in trastuzumab. Finally, stacked membranes containing trypsin and chymotrypsin allow fast sequential proteolytic digestion to site-specifically identify the glycans of SARS-CoV-2 receptor binding domain. One can easily assemble the protease-containing membranes in commercial spin columns, and spinning multiple columns simultaneously will facilitate parallel analyses.
Keyphrases
- liquid chromatography
- tandem mass spectrometry
- sars cov
- mass spectrometry
- high resolution mass spectrometry
- ultra high performance liquid chromatography
- anaerobic digestion
- cell surface
- binding protein
- high performance liquid chromatography
- simultaneous determination
- gas chromatography
- solid phase extraction
- density functional theory
- protein protein
- single molecule
- amino acid
- room temperature
- solid state
- bioinformatics analysis
- small molecule
- ionic liquid
- transcription factor
- tyrosine kinase
- molecular dynamics
- dna binding
- loop mediated isothermal amplification