Unambiguous Phosphosite Localization using Electron-Transfer/Higher-Energy Collision Dissociation (EThcD)

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Publication date

2013

Authors

Frese, Christian KISNI 0000000391991067
Zhou, Houjiang
Taus, T.
Altelaar, A.F. MaartenORCID 0000-0001-5093-5945ISNI 0000000393438329
Mechtler, K.
Heck, Albert J.R.ORCID 0000-0002-2405-4404ISNI 0000000393921118
Mohammed, S.ISNI 0000000390338429

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Abstract

We recently introduced a novel scheme combining electron-transfer and higher-energy collision dissociation (termed EThcD), for improved peptide ion fragmentation and identification. We reasoned that phosphosite localization, one of the major hurdles in high-throughput phosphoproteomics, could also highly benefit from the generation of such EThcD spectra. Here, we systematically assessed the impact on phosphosite localization utilizing EThcD in comparison to methods employing either ETD or HCD, respectively, using a defined synthetic phosphopeptide mixture and also using a larger data set of Ti4+-IMAC enriched phosphopeptides from a tryptic human cell line digest. In combination with a modified version of phosphoRS, we observed that in the majority of cases EThcD generated richer and more confidently identified spectra, resulting in superior phosphosite localization scores. Our data demonstrates the distinctive potential of EThcD for PTM localization, also beyond protein phosphorylation.

Keywords

Farmacie/Biofarmaceutische wetenschappen (FARM), Farmacie(FARM)

Citation

Frese, C, Zhou, H, Taus, T, Altelaar, A F M, Mechtler, K, Heck, A J R & Mohammed, S 2013, 'Unambiguous Phosphosite Localization using Electron-Transfer/Higher-Energy Collision Dissociation (EThcD)', Journal of Proteome Research, vol. 12, pp. 1520-1525. https://doi.org/10.1021/pr301130k