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Updated: Jul 29, 2025

Isolation of Translating Ribosomes Containing Peptidyl-tRNAs for Functional and Structural Analyses
Published on: February 25, 2011
Pyruvate Kinase M (PKM) binds ribosomes in a poly-ADP ribosylation dependent manner to induce translational stalling
Nevraj S Kejiou1, Lena Ilan1, Stefan Aigner2
1Department of Biochemistry, University of Toronto, Toronto, ON, Canada.
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.
Insights
Pyruvate Kinase M (PKM), a metabolic enzyme, regulates mRNA translation in human cells by stalling ribosomes near specific amino acid sequences. This discovery links carbohydrate metabolism to gene expression post-transcriptionally.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Post-transcriptional regulation of mRNA translation is crucial for cellular function.
- The endoplasmic reticulum (ER) surface hosts numerous mRNA regulators.
- Compartment-specific mRNA translation regulation in the cytosol remains less understood.
Purpose of the Study:
- To identify factors regulating compartment-specific mRNA translation in human cells.
- To investigate the role of the glycolytic enzyme Pyruvate Kinase M (PKM) in mRNA translation.
Main Methods:
- Proteomic survey of polysome-interacting proteins.
- Enhanced crosslinking immunoprecipitation-sequencing (eCLIP-seq).
- Ribosome footprint protection sequencing.
Main Results:
- PKM identified as a cytosolic polysome interactor, regulated by ADP levels.
- PKM crosslinks to mRNA downstream of lysine- and glutamate-encoding regions.
- PKM binding causes translational stalling at these sites, linked to poly-ADP ribosylation (PARylation).
Conclusions:
- PKM plays a novel role in post-transcriptional gene regulation.
- A direct link between carbohydrate metabolism and mRNA translation is established.
- PKM's recruitment to polysomes depends on PARylation activity.
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