Pyruvate Kinase M (PKM) binds ribosomes in a poly-ADP ribosylation dependent manner to induce translational stalling

Author:

Kejiou Nevraj S1,Ilan Lena1,Aigner Stefan2,Luo Enching2,Tonn Tori3,Ozadam Hakan3,Lee Muyoung3,Cole Gregory B1,Rabano Ines2,Rajakulendran Nishani4,Yee Brian A2,Najafabadi Hamed S56,Moraes Trevor F1ORCID,Angers Stephane14,Yeo Gene W2,Cenik Can3,Palazzo Alexander F1ORCID

Affiliation:

1. Department of Biochemistry, University of Toronto , Toronto , ON, Canada

2. Department of Cellular and Molecular Medicine, University of California San Diego , La Jolla , CA , USA

3. Department of Molecular Biosciences, University of Texas at Austin , Austin , TX , USA

4. Leslie Dan Faculty of Pharmacy, University of Toronto , Toronto , ON, Canada

5. Department of Human Genetics, McGill University , Montreal , QC, Canada

6. McGill University and Genome Quebec Innovation Centre , Montreal , QC, Canada

Abstract

Abstract In light of the numerous studies identifying post-transcriptional regulators on the surface of the endoplasmic reticulum (ER), we asked whether there are factors that regulate compartment specific mRNA translation in human cells. Using a proteomic survey of spatially regulated polysome interacting proteins, we identified the glycolytic enzyme Pyruvate Kinase M (PKM) as a cytosolic (i.e. ER-excluded) polysome interactor and investigated how it influences mRNA translation. We discovered that the PKM-polysome interaction is directly regulated by ADP levels–providing a link between carbohydrate metabolism and mRNA translation. By performing enhanced crosslinking immunoprecipitation-sequencing (eCLIP-seq), we found that PKM crosslinks to mRNA sequences that are immediately downstream of regions that encode lysine- and glutamate-enriched tracts. Using ribosome footprint protection sequencing, we found that PKM binding to ribosomes causes translational stalling near lysine and glutamate encoding sequences. Lastly, we observed that PKM recruitment to polysomes is dependent on poly-ADP ribosylation activity (PARylation)—and may depend on co-translational PARylation of lysine and glutamate residues of nascent polypeptide chains. Overall, our study uncovers a novel role for PKM in post-transcriptional gene regulation, linking cellular metabolism and mRNA translation.

Funder

Welch Foundation

CPRIT

Natural Sciences and Engineering Research Council of Canada

Publisher

Oxford University Press (OUP)

Subject

Genetics

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