eIF4G has intrinsic G-quadruplex binding activity that is required for tiRNA function

Author:

Lyons Shawn M1234ORCID,Kharel Prakash12ORCID,Akiyama Yasutoshi125,Ojha Sandeep34,Dave Dhwani1,Tsvetkov Vladimir678,Merrick William9,Ivanov Pavel12,Anderson Paul12

Affiliation:

1. Division of Rheumatology, Inflammation and Immunity, Brigham and Women's Hospital, Boston, MA, USA

2. Department of Medicine, Harvard Medical School, Boston, MA, USA

3. Department of Biochemistry, Boston University School of Medicine, Boston, MA, USA

4. The Genome Science Institute, Boston University School of Medicine, Boston, MA, USA

5. Laboratory of Oncology, Pharmacy Practice and Sciences, Tohoku University Graduate School of Pharmaceutical Sciences, Sendai, Japan

6. Computational Oncology Group, I.M. Sechenov First Moscow State Medical University , Moscow, Russia

7. Federal Research and Clinical Center forPhysical-Chemical Medicine, Federal Medical Biological Agency, Moscow, Russia

8. A. V. Topchiev Institute of Petrochemical Synthesis, Russian Academy of Sciences, Moscow, Russia

9. Department of Biochemistry, Case Western ReserveUniversity, Cleveland, OH, USA

Abstract

AbstractAs cells encounter adverse environmental conditions, such as hypoxia, oxidative stress or nutrient deprivation, they trigger stress response pathways to protect themselves until transient stresses have passed. Inhibition of translation is a key component of such cellular stress responses and mounting evidence has revealed the importance of a class of tRNA-derived small RNAs called tiRNAs in this process. The most potent of these small RNAs are those with the capability of assembling into tetrameric G-quadruplex (G4) structures. However, the mechanism by which these small RNAs inhibit translation has yet to be elucidated. Here we show that eIF4G, the major scaffolding protein in the translation initiation complex, directly binds G4s and this activity is required for tiRNA-mediated translation repression. Targeting of eIF4G results in an impairment of 40S ribosome scanning on mRNAs leading to the formation of eIF2α-independent stress granules. Our data reveals the mechanism by which tiRNAs inhibit translation and demonstrates novel activity for eIF4G in the regulation of translation.

Funder

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Genetics

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