Frequency chasing of individual megadalton ions in an Orbitrap analyser improves precision of analysis in single-molecule mass spectrometry

Publication date

2022-05

Authors

Wörner, Tobias PISNI 0000000492960411
Aizikov, Konstantin
Snijder, J.ISNI 0000000387416756
Fort, Kyle LISNI 0000000505995112
Makarov, AlexanderISNI 0000000118161206
Heck, Albert J RORCID 0000-0002-2405-4404ISNI 0000000393921118

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Advisors

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Document Type

Article
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cc_by

Abstract

To enhance the performance of charge-detection mass spectrometry, we investigated the behaviour of macromolecular single ions on their paths towards and within the Orbitrap analyser. Ions with a mass beyond one megadalton reach a plateau of stability and can be successfully trapped for seconds, travelling a path length of multiple kilometres, thereby enabling precise mass analysis with an effective resolution of greater than 100,000 at a mass-to-charge ratio of 35,000. Through monitoring the frequency of individual ions, we show that these high-mass ions, rather than being lost from the trap, can gradually lose residual solvent molecules and, in rare cases, a single elementary charge. We also demonstrate that the frequency drift of single ions due to desolvation and charge stripping can be corrected, which improves the effective ion sampling 23-fold and gives a twofold improvement in mass precision and resolution. [Figure not available: see fulltext.]

Keywords

Ions/chemistry, Macromolecular Substances/chemistry, Mass Spectrometry/methods, General Chemical Engineering, General Chemistry

Citation

Wörner, T P, Aizikov, K, Snijder, J, Fort, K L, Makarov, A A & Heck, A J R 2022, 'Frequency chasing of individual megadalton ions in an Orbitrap analyser improves precision of analysis in single-molecule mass spectrometry', Nature Chemistry, vol. 14, no. 5, pp. 515-522. https://doi.org/10.1038/s41557-022-00897-1