Benchmarking multiple fragmentation methods on an orbitrap fusion for top-down phospho-proteoform characterization

Publication date

2015-04-21

Authors

Brunner, Andrea M.ISNI 0000000502826452
Lössl, PhilipISNI 0000000506017572
Liu, FanISNI 0000000506024414
Huguet, Romain
Mullen, Christopher
Yamashita, Masami
Zabrouskov, Vlad
Makarov, Alexander
Altelaar, A.F. MaartenORCID 0000-0001-5093-5945ISNI 0000000393438329
Heck, AlbertORCID 0000-0002-2405-4404ISNI 0000000393921118

Editors

Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

Top-down analysis of intact proteins by mass spectrometry provides an ideal platform for comprehensive proteoform characterization, in particular, for the identification and localization of post-translational modifications (PTM) co-occurring on a protein. One of the main bottlenecks in top-down proteomics is insufficient protein sequence coverage caused by incomplete protein fragmentation. Based on previous work on peptides, increasing sequence coverage and PTM localization by combining sequential ETD and HCD fragmentation in a single fragmentation event, we hypothesized that protein sequence coverage and phospho-proteoform characterization could be equally improved by this new dual fragmentation method termed EThcD, recently been made available on the Orbitrap Fusion. Here, we systematically benchmark the performance of several (hybrid) fragmentation methods for intact protein analysis on an Orbitrap Fusion, using as a model system a 17.5 kDa N-terminal fragment of the mitotic regulator Bora. During cell division Bora becomes multiply phosphorylated by a variety of cell cycle kinases, including Aurora A and Plk1, albeit at distinctive sites. Here, we monitor the phosphorylation of Bora by Aurora A and Plk1, analyzing the generated distinctive phospho-proteoforms by top-down fragmentation. We show that EThcD and ETciD on a Fusion are feasible and capable of providing richer fragmentation spectra compared to HCD or ETD alone, increasing protein sequence coverage, and thereby facilitating phosphosite localization and the determination of kinase specific phosphorylation sites in these phospho-proteoforms. Data are available via ProteomeXchange with identifier PXD001845.

Keywords

Taverne, Analytical Chemistry

Citation

Brunner, A M, Lössl, P, Liu, F, Huguet, R, Mullen, C, Yamashita, M, Zabrouskov, V, Makarov, A, Altelaar, A F M & Heck, A J R 2015, 'Benchmarking multiple fragmentation methods on an orbitrap fusion for top-down phospho-proteoform characterization', Analytical Chemistry, vol. 87, no. 8, pp. 4152-4158. https://doi.org/10.1021/acs.analchem.5b00162