A high-throughput approach reveals distinct peptide charging behaviors in electrospray ionization mass spectrometry

Author:

Xu Allyn M.ORCID,Tang Lauren C.ORCID,Jovanovic MarkoORCID,Regev OdedORCID

Abstract

AbstractElectrospray ionization is a powerful and prevalent technique used to ionize analytes in mass spectrometry. The distribution of charges that an analyte receives (charge state distribution, CSD) is an important consideration for interpreting mass spectra. However, due to an incomplete understanding of the ionization mechanism, the analyte properties that influence CSDs are not fully understood. Here, we employ a machine learning-based high-throughput approach and analyze CSDs of hundreds of thousands of peptides. Interestingly, half of the peptides exhibit charges that differ from what one would naively expect (number of basic sites). We find that these peptides can be classified into two regimes—undercharging and overcharging—and that these two regimes display markedly different charging characteristics. Strikingly, peptides in the overcharging regime show minimal dependence on basic site count, and more generally, the two regimes exhibit distinct sequence determinants. These findings highlight the rich ionization behavior of peptides and the potential of CSDs for enhancing peptide identification.

Publisher

Cold Spring Harbor Laboratory

Reference73 articles.

1. Electrospray Ionization for Mass Spectrometry of Large Biomolecules

2. Snyder, A. P. in ACS Symposium Series 1–20 (American Chemical Society, Washington, DC, 1996).

3. Electrospray ionization mass spectrometry: a technique to access the information beyond the molecular weight of the analyte;Int. J. Anal. Chem,2012

4. High-Throughput and Sensitive Screening by Ultra-Performance Liquid Chromatography Tandem Mass Spectrometry of Diuretics and other Doping Agents

5. Analysis of dicarboxylic acids by tandem mass spectrometry. High-throughput quantitative measurement of methylmalonic acid in serum, plasma, and urine;Clin. Chem,2001

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