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DEAD-box helicase eIF4A2 inhibits CNOT7 deadenylation activity

Meijer, Hedda A.; Schmidt, Tobias; Gillen, Sarah L.; Langlais, Claudia; Jukes-Jones, Rebekah; de Moor, Cornelia H.; Cain, Kelvin; Wilczynska, Ania; Bushell, Martin

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Authors

Hedda A. Meijer

Tobias Schmidt

Sarah L. Gillen

Claudia Langlais

Rebekah Jukes-Jones

Kelvin Cain

Ania Wilczynska

Martin Bushell



Abstract

The CCR4–NOT complex plays an important role in the translational repression and deadenylation of mRNAs. However, little is known about the specific roles of interacting factors. We demonstrate that the DEAD-box helicases eIF4A2 and DDX6 interact directly with the MA3 and MIF domains of CNOT1 and compete for binding. Furthermore, we now show that incorporation of eIF4A2 into the CCR4–NOT complex inhibits CNOT7 deadenylation activity in contrast to DDX6 which enhances CNOT7 activity. Polyadenylation tests (PAT) on endogenous mRNAs determined that eIF4A2 bound mRNAs have longer poly(A) tails than DDX6 bound mRNAs. Immunoprecipitation experiments show that eIF4A2 does not inhibit CNOT7 association with the CCR4–NOT complex but instead inhibits CNOT7 activity. We identified a CCR4–NOT interacting factor, TAB182, that modulates helicase recruitment into the CCR4–NOT complex, potentially affecting the outcome for the targeted mRNA. Together, these data show that the fate of an mRNA is dependent on the specific recruitment of either eIF4A2 or DDX6 to the CCR4–NOT complex which results in different pathways for translational repression and mRNA deadenylation.

Citation

Meijer, H. A., Schmidt, T., Gillen, S. L., Langlais, C., Jukes-Jones, R., de Moor, C. H., Cain, K., Wilczynska, A., & Bushell, M. (2019). DEAD-box helicase eIF4A2 inhibits CNOT7 deadenylation activity. Nucleic Acids Research, 47(15), 8224-8238. https://doi.org/10.1093/nar/gkz509

Journal Article Type Article
Acceptance Date Jun 5, 2019
Online Publication Date Jun 10, 2019
Publication Date Sep 5, 2019
Deposit Date Sep 16, 2019
Publicly Available Date Sep 17, 2019
Journal Nucleic Acids Research
Print ISSN 0305-1048
Electronic ISSN 1362-4962
Publisher Oxford University Press
Peer Reviewed Peer Reviewed
Volume 47
Issue 15
Pages 8224-8238
DOI https://doi.org/10.1093/nar/gkz509
Public URL https://nottingham-repository.worktribe.com/output/2470263
Publisher URL https://academic.oup.com/nar/article/47/15/8224/5513320
Contract Date Sep 17, 2019

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