mTORC1 promotes TOP mRNA translation through site-specific phosphorylation of LARP1

Author:

Jia Jian-Jun1,Lahr Roni M2,Solgaard Michael T3,Moraes Bruno J45,Pointet Roberta1,Yang An-Dao1,Celucci Giovanna1,Graber Tyson E1,Hoang Huy-Dung1,Niklaus Marius R1,Pena Izabella A1,Hollensen Anne K3,Smith Ewan M6ORCID,Chaker-Margot Malik7,Anton Leonie7,Dajadian Christopher8,Livingstone Mark8,Hearnden Jaclyn8,Wang Xu-Dong9ORCID,Yu Yonghao9,Maier Timm7,Damgaard Christian K3,Berman Andrea J2,Alain Tommy1,Fonseca Bruno D15ORCID

Affiliation:

1. Children's Hospital of Eastern Ontario (CHEO) Research Institute, Department of Biochemistry, Microbiology and Immunology, University of Ottawa, Ottawa, Canada

2. Department of Biological Sciences, University of Pittsburgh, Pittsburgh, PA, USA

3. Department of Molecular Biology and Genetics, Aarhus University, Aarhus, Denmark

4. GABBA PhD Program, Abel Salazar Biomedical Sciences Institute, University of Porto, Porto, Portugal

5. PrimerGen Ltd, Viseu, Portugal

6. Cancer Research UK Beatson Institute, Glasgow, UK

7. Biozentrum, University of Basel, Basel, Switzerland

8. Department of Biochemistry, Rosalind and Morris Goodman Cancer Centre, McGill University, Montréal, Canada

9. Department of Biochemistry, UT Southwestern Medical Center, Dallas, TX, USA

Abstract

Abstract LARP1 is a key repressor of TOP mRNA translation. It binds the m7Gppp cap moiety and the adjacent 5′TOP motif of TOP mRNAs, thus impeding the assembly of the eIF4F complex on these transcripts. mTORC1 controls TOP mRNA translation via LARP1, but the details of the mechanism are unclear. Herein we elucidate the mechanism by which mTORC1 controls LARP1’s translation repression activity. We demonstrate that mTORC1 phosphorylates LARP1 in vitro and in vivo, activities that are efficiently inhibited by rapamycin and torin1. We uncover 26 rapamycin-sensitive phospho-serine and -threonine residues on LARP1 that are distributed in 7 clusters. Our data show that phosphorylation of a cluster of residues located proximally to the m7Gppp cap-binding DM15 region is particularly sensitive to rapamycin and regulates both the RNA-binding and the translation inhibitory activities of LARP1. Our results unravel a new model of translation control in which the La module (LaMod) and DM15 region of LARP1, both of which can directly interact with TOP mRNA, are differentially regulated: the LaMod remains constitutively bound to PABP (irrespective of the activation status of mTORC1), while the C-terminal DM15 ‘pendular hook’ engages the TOP mRNA 5′-end to repress translation, but only in conditions of mTORC1 inhibition.

Funder

Movember Discovery Grant

American Cancer Society

Welch Foundation

Danish Council for Independent Research

NIH

ACS

PCC Movember Discovery

Terry Fox Research Institute

Natural Science and Engineering Research Council

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference78 articles.

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