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Pyrophosphoproteomics: extensive protein pyrophosphorylation revealed in human cell lines

View ORCID ProfileJeremy A. M. Morgan, Arpita Singh, Leonie Kurz, View ORCID ProfileMichal Nadler-Holly, View ORCID ProfileMartin Penkert, View ORCID ProfileEberhard Krause, View ORCID ProfileFan Liu, View ORCID ProfileRashna Bhandari, Dorothea Fiedler
doi: https://doi.org/10.1101/2022.11.11.516170
Jeremy A. M. Morgan
1Leibniz-Forschungsinstitut für Molekulare Pharmakologie, Robert-Rössle-Straße 10, 13125 Berlin, Germany
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  • ORCID record for Jeremy A. M. Morgan
Arpita Singh
2Laboratory of Cell Signalling, Centre for DNA Fingerprinting and Diagnostics, Inner Ring Road, Uppal, Hyderabad 500039, India
4Graduate Studies, Regional Centre for Biotechnology, Faridabad 121001, Haryana, India
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Leonie Kurz
1Leibniz-Forschungsinstitut für Molekulare Pharmakologie, Robert-Rössle-Straße 10, 13125 Berlin, Germany
3Institute of Chemistry, Humboldt-Universität zu Berlin, Brook-Taylor-Straße 2, 12489 Berlin, Germany
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Michal Nadler-Holly
1Leibniz-Forschungsinstitut für Molekulare Pharmakologie, Robert-Rössle-Straße 10, 13125 Berlin, Germany
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Martin Penkert
1Leibniz-Forschungsinstitut für Molekulare Pharmakologie, Robert-Rössle-Straße 10, 13125 Berlin, Germany
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Eberhard Krause
1Leibniz-Forschungsinstitut für Molekulare Pharmakologie, Robert-Rössle-Straße 10, 13125 Berlin, Germany
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Fan Liu
1Leibniz-Forschungsinstitut für Molekulare Pharmakologie, Robert-Rössle-Straße 10, 13125 Berlin, Germany
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Rashna Bhandari
2Laboratory of Cell Signalling, Centre for DNA Fingerprinting and Diagnostics, Inner Ring Road, Uppal, Hyderabad 500039, India
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Dorothea Fiedler
1Leibniz-Forschungsinstitut für Molekulare Pharmakologie, Robert-Rössle-Straße 10, 13125 Berlin, Germany
3Institute of Chemistry, Humboldt-Universität zu Berlin, Brook-Taylor-Straße 2, 12489 Berlin, Germany
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  • For correspondence: fiedler@fmp-berlin.de
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Abstract

Reversible protein phosphorylation is a central signaling mechanism in eukaryotic cells. While the identification of canonical phosphorylation sites using mass-spectrometry (MS) based proteomics has become routine, annotation of non-canonical phosphorylation has remained a challenge. Here, we report a tailored pyrophosphoproteomics workflow to detect and reliably assign protein pyrophosphorylation in two human cell lines, providing the first direct evidence of endogenous protein pyrophosphorylation. Detection of protein pyrophosphorylation was reproducible, specific and consistent with previous biochemical evidence relating the installation of the modification to inositol pyrophosphates (PP-InsPs). We manually validated 148 pyrophosphosites across 71 human proteins, the most heavily pyrophosphorylated of which were the nucleolar proteins NOLC1 and TCOF1. A predictive workflow based on the MS data set was established to recognize putative pyrophosphorylation sequences, and UBF1, a nucleolar protein incompatible with the proteomics method, was biochemically shown to undergo pyrophosphorylation. When the biosynthesis of PP-InsPs was perturbed in a model cell line, proteins expressed in this background exhibited lower levels of pyrophosphorylation. Disruption of PP-InsP biosynthesis also significantly reduced rDNA transcription, potentially by lowering pyrophosphorylation on regulatory proteins NOLC1, TCOF1, and UBF1. Overall, protein pyrophosphorylation emerges as an archetype of non-canonical phosphorylation, and should be considered in future phosphoproteomic analyses.

Competing Interest Statement

The authors have declared no competing interest.

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Posted November 11, 2022.
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Pyrophosphoproteomics: extensive protein pyrophosphorylation revealed in human cell lines
Jeremy A. M. Morgan, Arpita Singh, Leonie Kurz, Michal Nadler-Holly, Martin Penkert, Eberhard Krause, Fan Liu, Rashna Bhandari, Dorothea Fiedler
bioRxiv 2022.11.11.516170; doi: https://doi.org/10.1101/2022.11.11.516170
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Pyrophosphoproteomics: extensive protein pyrophosphorylation revealed in human cell lines
Jeremy A. M. Morgan, Arpita Singh, Leonie Kurz, Michal Nadler-Holly, Martin Penkert, Eberhard Krause, Fan Liu, Rashna Bhandari, Dorothea Fiedler
bioRxiv 2022.11.11.516170; doi: https://doi.org/10.1101/2022.11.11.516170

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