Analytical Chemistry 2018-04-18

Determination of Collision Cross-Sections of Protein Ions in an Orbitrap Mass Analyzer

JamesD. Sanders, Dmitry Grinfeld, Konstantin Aizikov, Alexander Makarov, Dustin D. Holden, Jennifer S. Brodbelt

Index: 10.1021/acs.analchem.8b00724

Full Text: HTML

Abstract

We demonstrate a method for determining the collision cross-sections (CCSs) of protein ions based on the decay rate of the time-domain transient signal from an Orbitrap mass analyzer. Multiply charged ions of ubiquitin, cytochrome c, and myoglobin were generated by electrospray ionization of both denaturing solutions and ones with high salt content to preserve native-like structures. A linear relationship between the pressure in the Orbitrap analyzer and the transient decay rate was established and used to demonstrate that the signal decay is primarily due to ion-neutral collisions for protein ions across the entire working pressure range of the instrument. The CCSs measured in this study were compared with previously published CCS values measured by ion mobility mass spectrometry (IMS), and results from the two methods were found to differ by less than 7% for all charge states known to adopt single gas-phase conformations.

Latest Articles:

Large-Scale Differentiation and Site Specific Discrimination of Hydroxyproline Isomers by Electron Transfer/Higher-Energy Collision Dissociation (EThcD) Mass Spectrometry

2018-04-20

[10.1021/acs.analchem.8b00413]

Spatial-Resolution Cell Type Proteome Profiling of Cancer Tissue by Fully Integrated Proteomics Technology

2018-04-18

[10.1021/acs.analchem.8b00596]

Determination of Osmium Concentration and Isotope Composition at Ultra-low Level in Polar Ice and Snow

2018-04-18

[10.1021/acs.analchem.8b00150]

MoFi: A Software Tool for Annotating Glycoprotein Mass Spectra by Integrating Hybrid Data from the Intact Protein and Glycopeptide Level

2018-04-18

[10.1021/acs.analchem.8b00019]

Exploration of Nanoparticle-Mediated Photothermal Effect of TMB-H2O2 Colorimetric System and Its Application in a Visual Quantitative Photothermal Immunoassay

2018-04-17

[10.1021/acs.analchem.8b00842]

More Articles...