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A network of RNA-binding proteins controls translation efficiency to activate anaerobic metabolism

Author

Listed:
  • J. J. David Ho

    (University of Miami
    University of Miami
    University of Miami)

  • Nathan C. Balukoff

    (University of Miami
    University of Miami)

  • Phaedra R. Theodoridis

    (University of Miami
    University of Miami)

  • Miling Wang

    (University of Miami
    University of Miami)

  • Jonathan R. Krieger

    (The SickKids Proteomics, Analytics, Robotics & Chemical Biology Centre (SPARC Biocentre), The Hospital for Sick Children
    Bioinformatics Solutions Inc.)

  • Jonathan H. Schatz

    (University of Miami
    University of Miami)

  • Stephen Lee

    (University of Miami
    University of Miami
    University of Miami)

Abstract

Protein expression evolves under greater evolutionary constraint than mRNA levels, and translation efficiency represents a primary determinant of protein levels during stimuli adaptation. This raises the question as to the translatome remodelers that titrate protein output from mRNA populations. Here, we uncover a network of RNA-binding proteins (RBPs) that enhances the translation efficiency of glycolytic proteins in cells responding to oxygen deprivation. A system-wide proteomic survey of translational engagement identifies a family of oxygen-regulated RBPs that functions as a switch of glycolytic intensity. Tandem mass tag-pulse SILAC (TMT-pSILAC) and RNA sequencing reveals that each RBP controls a unique but overlapping portfolio of hypoxic responsive proteins. These RBPs collaborate with the hypoxic protein synthesis apparatus, operating as a translation efficiency checkpoint that integrates upstream mRNA signals to activate anaerobic metabolism. This system allows anoxia-resistant animals and mammalian cells to initiate anaerobic glycolysis and survive hypoxia. We suggest that an oxygen-sensitive RBP cluster controls anaerobic metabolism to confer hypoxia tolerance.

Suggested Citation

  • J. J. David Ho & Nathan C. Balukoff & Phaedra R. Theodoridis & Miling Wang & Jonathan R. Krieger & Jonathan H. Schatz & Stephen Lee, 2020. "A network of RNA-binding proteins controls translation efficiency to activate anaerobic metabolism," Nature Communications, Nature, vol. 11(1), pages 1-16, December.
  • Handle: RePEc:nat:natcom:v:11:y:2020:i:1:d:10.1038_s41467-020-16504-1
    DOI: 10.1038/s41467-020-16504-1
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