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Purine-rich RNA sequences in the 5’UTR site-specifically regulate eIF4A1-unwinding through eIF4A1-multimerisation to facilitate translation

View ORCID ProfileTobias Schmidt, View ORCID ProfileAdrianna Dabrowska, View ORCID ProfileJoseph A. Waldron, Kelly Hodge, Grigorios Koulouras, View ORCID ProfileMads Gabrielsen, June Munro, David C. Tack, Gemma Harris, View ORCID ProfileEwan McGhee, David Scott, View ORCID ProfileLeo M. Carlin, View ORCID ProfileDanny Huang, View ORCID ProfileJohn Le Quesne, View ORCID ProfileSara Zanivan, View ORCID ProfileAnia Wilczynska, View ORCID ProfileMartin Bushell
doi: https://doi.org/10.1101/2022.08.08.503179
Tobias Schmidt
1Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Glasgow, G61 1BD, UK
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  • For correspondence: t.schmidt@beatson.gla.ac.uk m.bushell@beatson.gla.ac.uk
Adrianna Dabrowska
1Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Glasgow, G61 1BD, UK
2Institute of Cancer Sciences, University of Glasgow, Garscube Estate, Switchback Road, Glasgow, G61 1QH, UK
3School of Medicine, University of California, Medical Center Way, San Francisco, CA 94143, USA
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Joseph A. Waldron
1Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Glasgow, G61 1BD, UK
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Kelly Hodge
1Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Glasgow, G61 1BD, UK
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Grigorios Koulouras
1Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Glasgow, G61 1BD, UK
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Mads Gabrielsen
4MVLS Structural Biology and Biophysical Characterisation Facility, University of Glasgow, University Avenue, Glasgow, G12 8QQ, UK
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  • ORCID record for Mads Gabrielsen
June Munro
1Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Glasgow, G61 1BD, UK
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David C. Tack
5Spectrum Health Office of Research and Education, Spectrum Health System, 15 Michigan Street NE, Grand Rapids, MI, 49503, USA
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Gemma Harris
6Research Complex at Harwell, Rutherford Appleton Laboratory, Harwell Campus, Didcot, OX11 0FA, UK
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Ewan McGhee
1Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Glasgow, G61 1BD, UK
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David Scott
6Research Complex at Harwell, Rutherford Appleton Laboratory, Harwell Campus, Didcot, OX11 0FA, UK
7ISIS Spallation Neutron and Muon Source, Rutherford Appleton Laboratory, Harwell Campus, Didcot OX11 0QX, UK
8School of Biosciences, University of Nottingham, Sutton Bonington Campus, Sutton Bonington, LE12 5RD, UK
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Leo M. Carlin
1Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Glasgow, G61 1BD, UK
2Institute of Cancer Sciences, University of Glasgow, Garscube Estate, Switchback Road, Glasgow, G61 1QH, UK
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Danny Huang
1Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Glasgow, G61 1BD, UK
2Institute of Cancer Sciences, University of Glasgow, Garscube Estate, Switchback Road, Glasgow, G61 1QH, UK
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John Le Quesne
1Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Glasgow, G61 1BD, UK
2Institute of Cancer Sciences, University of Glasgow, Garscube Estate, Switchback Road, Glasgow, G61 1QH, UK
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Sara Zanivan
1Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Glasgow, G61 1BD, UK
2Institute of Cancer Sciences, University of Glasgow, Garscube Estate, Switchback Road, Glasgow, G61 1QH, UK
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Ania Wilczynska
1Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Glasgow, G61 1BD, UK
2Institute of Cancer Sciences, University of Glasgow, Garscube Estate, Switchback Road, Glasgow, G61 1QH, UK
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Martin Bushell
1Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Glasgow, G61 1BD, UK
2Institute of Cancer Sciences, University of Glasgow, Garscube Estate, Switchback Road, Glasgow, G61 1QH, UK
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  • For correspondence: t.schmidt@beatson.gla.ac.uk m.bushell@beatson.gla.ac.uk
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Abstract

Oncogenic translational programmes underpin cancer development and are often driven by dysregulation of oncogenic signalling pathways that converge on the eukaryotic translation initiation (eIF) 4F complex. Altered eIF4F activity promotes translation of oncogene mRNAs that typically contain highly structured 5’UTRs rendering their translation strongly dependent on RNA unwinding by the DEAD-box helicase eIF4A1 subunit of the eIF4F complex. While eIF4A1-dependent mRNAs have been widely investigated, it is still unclear how highly structured mRNAs recruit and activate eIF4A1 unwinding specifically to facilitate their preferential translation.

Here, we show that RNA sequence motifs regulate eIF4A1 unwinding activity in cells. Our data demonstrate that eIF4A1-dependent mRNAs contain AG-rich motifs within their 5’UTR which recruit and stimulate eIF4A1 unwinding of localised RNA structure to facilitate mRNA translation. This mode of eIF4A1 regulation is used by mRNAs encoding components of mTORC-signalling and cell cycle progression and renders these mRNAs particularly sensitive to eIF4A1-inhibition. Mechanistically, we show that binding of eIF4A1 to AG-rich sequences leads to multimerization of eIF4A1 with eIF4A1 subunits performing distinct enzymatic activities. Our structural data suggest that RNA-binding of multimeric eIF4A1 induces conformational changes in the RNA substrate resulting in an optimal positioning of eIF4A1 proximal to the RNA duplex region that supports efficient unwinding.

Hence, we conclude a model in which mRNAs utilise AG-rich sequences to specifically recruit eIF4A1, enabling assembly of the helicase-active multimeric eIF4A1 complex, and positioning these complexes proximal to stable localised RNA structure allowing ribosomal subunit scanning.

Competing Interest Statement

The authors have declared no competing interest.

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-NC-ND 4.0 International license.
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Purine-rich RNA sequences in the 5’UTR site-specifically regulate eIF4A1-unwinding through eIF4A1-multimerisation to facilitate translation
Tobias Schmidt, Adrianna Dabrowska, Joseph A. Waldron, Kelly Hodge, Grigorios Koulouras, Mads Gabrielsen, June Munro, David C. Tack, Gemma Harris, Ewan McGhee, David Scott, Leo M. Carlin, Danny Huang, John Le Quesne, Sara Zanivan, Ania Wilczynska, Martin Bushell
bioRxiv 2022.08.08.503179; doi: https://doi.org/10.1101/2022.08.08.503179
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Purine-rich RNA sequences in the 5’UTR site-specifically regulate eIF4A1-unwinding through eIF4A1-multimerisation to facilitate translation
Tobias Schmidt, Adrianna Dabrowska, Joseph A. Waldron, Kelly Hodge, Grigorios Koulouras, Mads Gabrielsen, June Munro, David C. Tack, Gemma Harris, Ewan McGhee, David Scott, Leo M. Carlin, Danny Huang, John Le Quesne, Sara Zanivan, Ania Wilczynska, Martin Bushell
bioRxiv 2022.08.08.503179; doi: https://doi.org/10.1101/2022.08.08.503179

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