Cargando…

Improved Protein and PTM Characterization with a Practical Electron-Based Fragmentation on Q-TOF Instruments

[Image: see text] Electron-based dissociation (ExD) produces uncluttered mass spectra of intact proteins while preserving labile post-translational modifications. However, technical challenges have limited this option to only a few high-end mass spectrometers. We have developed an efficient ExD cell...

Descripción completa

Detalles Bibliográficos
Autores principales: Beckman, Joseph S., Voinov, Valery G., Hare, Michael, Sturgeon, Derrill, Vasil’ev, Yury, Oppenheimer, Diana, Shaw, Jared B., Wu, Shuai, Glaskin, Rebecca, Klein, Christian, Schwarzer, Cody, Stafford, George
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8343505/
https://www.ncbi.nlm.nih.gov/pubmed/33914527
http://dx.doi.org/10.1021/jasms.0c00482
_version_ 1783734303145852928
author Beckman, Joseph S.
Voinov, Valery G.
Hare, Michael
Sturgeon, Derrill
Vasil’ev, Yury
Oppenheimer, Diana
Shaw, Jared B.
Wu, Shuai
Glaskin, Rebecca
Klein, Christian
Schwarzer, Cody
Stafford, George
author_facet Beckman, Joseph S.
Voinov, Valery G.
Hare, Michael
Sturgeon, Derrill
Vasil’ev, Yury
Oppenheimer, Diana
Shaw, Jared B.
Wu, Shuai
Glaskin, Rebecca
Klein, Christian
Schwarzer, Cody
Stafford, George
author_sort Beckman, Joseph S.
collection PubMed
description [Image: see text] Electron-based dissociation (ExD) produces uncluttered mass spectra of intact proteins while preserving labile post-translational modifications. However, technical challenges have limited this option to only a few high-end mass spectrometers. We have developed an efficient ExD cell that can be retrofitted in less than an hour into current LC/Q-TOF instruments. Supporting software has been developed to acquire, process, and annotate peptide and protein ExD fragmentation spectra. In addition to producing complementary fragmentation, ExD spectra enable many isobaric leucine/isoleucine and isoaspartate/aspartate pairs to be distinguished by side-chain fragmentation. The ExD cell preserves phosphorylation and glycosylation modifications. It also fragments longer peptides more efficiently to reveal signaling cross-talk between multiple post-translational modifications on the same protein chain and cleaves disulfide bonds in cystine knotted proteins and intact antibodies. The ability of the ExD cell to combine collisional activation with electron fragmentation enables more complete sequence coverage by disrupting intramolecular electrostatic interactions that can hold fragments of large peptides and proteins together. These enhanced capabilities made possible by the ExD cell expand the size of peptides and proteins that can be analyzed as well as the analytical certainty of characterizing their post-translational modifications.
format Online
Article
Text
id pubmed-8343505
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-83435052021-08-09 Improved Protein and PTM Characterization with a Practical Electron-Based Fragmentation on Q-TOF Instruments Beckman, Joseph S. Voinov, Valery G. Hare, Michael Sturgeon, Derrill Vasil’ev, Yury Oppenheimer, Diana Shaw, Jared B. Wu, Shuai Glaskin, Rebecca Klein, Christian Schwarzer, Cody Stafford, George J Am Soc Mass Spectrom [Image: see text] Electron-based dissociation (ExD) produces uncluttered mass spectra of intact proteins while preserving labile post-translational modifications. However, technical challenges have limited this option to only a few high-end mass spectrometers. We have developed an efficient ExD cell that can be retrofitted in less than an hour into current LC/Q-TOF instruments. Supporting software has been developed to acquire, process, and annotate peptide and protein ExD fragmentation spectra. In addition to producing complementary fragmentation, ExD spectra enable many isobaric leucine/isoleucine and isoaspartate/aspartate pairs to be distinguished by side-chain fragmentation. The ExD cell preserves phosphorylation and glycosylation modifications. It also fragments longer peptides more efficiently to reveal signaling cross-talk between multiple post-translational modifications on the same protein chain and cleaves disulfide bonds in cystine knotted proteins and intact antibodies. The ability of the ExD cell to combine collisional activation with electron fragmentation enables more complete sequence coverage by disrupting intramolecular electrostatic interactions that can hold fragments of large peptides and proteins together. These enhanced capabilities made possible by the ExD cell expand the size of peptides and proteins that can be analyzed as well as the analytical certainty of characterizing their post-translational modifications. American Chemical Society 2021-04-29 2021-08-04 /pmc/articles/PMC8343505/ /pubmed/33914527 http://dx.doi.org/10.1021/jasms.0c00482 Text en © 2021 American Society for Mass Spectrometry. Published by American Chemical Society. All rights reserved. https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Beckman, Joseph S.
Voinov, Valery G.
Hare, Michael
Sturgeon, Derrill
Vasil’ev, Yury
Oppenheimer, Diana
Shaw, Jared B.
Wu, Shuai
Glaskin, Rebecca
Klein, Christian
Schwarzer, Cody
Stafford, George
Improved Protein and PTM Characterization with a Practical Electron-Based Fragmentation on Q-TOF Instruments
title Improved Protein and PTM Characterization with a Practical Electron-Based Fragmentation on Q-TOF Instruments
title_full Improved Protein and PTM Characterization with a Practical Electron-Based Fragmentation on Q-TOF Instruments
title_fullStr Improved Protein and PTM Characterization with a Practical Electron-Based Fragmentation on Q-TOF Instruments
title_full_unstemmed Improved Protein and PTM Characterization with a Practical Electron-Based Fragmentation on Q-TOF Instruments
title_short Improved Protein and PTM Characterization with a Practical Electron-Based Fragmentation on Q-TOF Instruments
title_sort improved protein and ptm characterization with a practical electron-based fragmentation on q-tof instruments
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8343505/
https://www.ncbi.nlm.nih.gov/pubmed/33914527
http://dx.doi.org/10.1021/jasms.0c00482
work_keys_str_mv AT beckmanjosephs improvedproteinandptmcharacterizationwithapracticalelectronbasedfragmentationonqtofinstruments
AT voinovvaleryg improvedproteinandptmcharacterizationwithapracticalelectronbasedfragmentationonqtofinstruments
AT haremichael improvedproteinandptmcharacterizationwithapracticalelectronbasedfragmentationonqtofinstruments
AT sturgeonderrill improvedproteinandptmcharacterizationwithapracticalelectronbasedfragmentationonqtofinstruments
AT vasilevyury improvedproteinandptmcharacterizationwithapracticalelectronbasedfragmentationonqtofinstruments
AT oppenheimerdiana improvedproteinandptmcharacterizationwithapracticalelectronbasedfragmentationonqtofinstruments
AT shawjaredb improvedproteinandptmcharacterizationwithapracticalelectronbasedfragmentationonqtofinstruments
AT wushuai improvedproteinandptmcharacterizationwithapracticalelectronbasedfragmentationonqtofinstruments
AT glaskinrebecca improvedproteinandptmcharacterizationwithapracticalelectronbasedfragmentationonqtofinstruments
AT kleinchristian improvedproteinandptmcharacterizationwithapracticalelectronbasedfragmentationonqtofinstruments
AT schwarzercody improvedproteinandptmcharacterizationwithapracticalelectronbasedfragmentationonqtofinstruments
AT staffordgeorge improvedproteinandptmcharacterizationwithapracticalelectronbasedfragmentationonqtofinstruments