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Phospho-RNA sequencing with CircAID-p-seq

View ORCID ProfileAlessia Del Piano, Ruggero Barbieri, Michael Schmid, View ORCID ProfileLuciano Brocchieri, Silvia Tornaletti, Claudia Firrito, View ORCID ProfileLuca Minati, View ORCID ProfilePaola Bernabo, Ilaria Signoria, View ORCID ProfileFabio Lauria, View ORCID ProfileThomas H. Gillingwater, View ORCID ProfileGabriella Viero, View ORCID ProfileMassimiliano Clamer
doi: https://doi.org/10.1101/2020.12.16.423093
Alessia Del Piano
1IMMAGINA BioTechnology S.r.l, Via Sommarive 18, Povo (Italy)
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  • ORCID record for Alessia Del Piano
Ruggero Barbieri
1IMMAGINA BioTechnology S.r.l, Via Sommarive 18, Povo (Italy)
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Michael Schmid
2Genexa AG, Zurich, Switzerland
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Luciano Brocchieri
3TB-Seq, Inc., 458 Carlton Court, Ste H, South San Francisco, CA 94080, USA
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  • ORCID record for Luciano Brocchieri
Silvia Tornaletti
3TB-Seq, Inc., 458 Carlton Court, Ste H, South San Francisco, CA 94080, USA
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Claudia Firrito
1IMMAGINA BioTechnology S.r.l, Via Sommarive 18, Povo (Italy)
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Luca Minati
1IMMAGINA BioTechnology S.r.l, Via Sommarive 18, Povo (Italy)
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  • ORCID record for Luca Minati
Paola Bernabo
1IMMAGINA BioTechnology S.r.l, Via Sommarive 18, Povo (Italy)
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  • ORCID record for Paola Bernabo
Ilaria Signoria
4Institute of Biophysics, CNR Unit at Trento, Via Sommarive, 18 Povo, Italy
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Fabio Lauria
4Institute of Biophysics, CNR Unit at Trento, Via Sommarive, 18 Povo, Italy
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  • ORCID record for Fabio Lauria
Thomas H. Gillingwater
5Edinburgh Medical School: Biomedical Sciences & Euan MacDonald Centre for Motor Neurone Disease Research, University of Edinburgh, Edinburgh, UK
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Gabriella Viero
4Institute of Biophysics, CNR Unit at Trento, Via Sommarive, 18 Povo, Italy
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  • ORCID record for Gabriella Viero
Massimiliano Clamer
1IMMAGINA BioTechnology S.r.l, Via Sommarive 18, Povo (Italy)
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  • ORCID record for Massimiliano Clamer
  • For correspondence: mclamer@immaginabiotech.com
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Abstract

Accurate positional information concerning ribosomes and RNA binding proteins with respect to their transcripts is important to understand the global regulatory network underlying protein and RNA fate in living cells. Most footprinting approaches generate RNA fragments bearing a phosphate or cyclic phosphate groups at their 3′ end. Unfortunately, all current protocols for library preparation rely only on the presence of a 3′ hydroxyl group. Here, we developed circAID-p-seq, a PCR-free library preparation for 3′ phospho-RNA sequencing. We applied circAID-p-seq to ribosome profiling, which produces fragments protected by ribosomes after endonuclease digestion. CircAID-p-seq, combined with the dedicated computational pipeline circAidMe, facilitates accurate, fast, highly efficient and low-cost sequencing of phospho-RNA fragments from eukaryotic cells and tissues. While assessing circAID-p-seq to portray ribosomes engaged with transcripts, we provide a versatile tool to unravel any 3′-phospho RNA molecules.

Competing Interest Statement

M.C. is the founder of, director of, and a shareholder in IMMAGINA BioTechnology S.r.l., a company engaged in the development of new technologies for gene expression analysis at the ribosomal level. L.M, A.D.P., C.F., P.B are employees of IMMAGINA BioTechnology S.r.l. G.V is a scientific advisor of IMMAGINA BioTechnology S.r.l. All of the other authors declare no competing interests. CircAID-p-seq technology is covered by the international patent application number PCT/IB2020/058259.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-ND 4.0 International license.
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Posted December 16, 2020.
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Phospho-RNA sequencing with CircAID-p-seq
Alessia Del Piano, Ruggero Barbieri, Michael Schmid, Luciano Brocchieri, Silvia Tornaletti, Claudia Firrito, Luca Minati, Paola Bernabo, Ilaria Signoria, Fabio Lauria, Thomas H. Gillingwater, Gabriella Viero, Massimiliano Clamer
bioRxiv 2020.12.16.423093; doi: https://doi.org/10.1101/2020.12.16.423093
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Phospho-RNA sequencing with CircAID-p-seq
Alessia Del Piano, Ruggero Barbieri, Michael Schmid, Luciano Brocchieri, Silvia Tornaletti, Claudia Firrito, Luca Minati, Paola Bernabo, Ilaria Signoria, Fabio Lauria, Thomas H. Gillingwater, Gabriella Viero, Massimiliano Clamer
bioRxiv 2020.12.16.423093; doi: https://doi.org/10.1101/2020.12.16.423093

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