| Literature DB >> 30157424 |
Sandra Rode1, Henrike Ohm1, Lea Anhäuser2, Marina Wagner3, Mechthild Rosing1, Xiaobing Deng4, Olga Sin5, Sebastian A Leidel5, Erik Storkebaum3, Andrea Rentmeister2, Sijun Zhu4, Sebastian Rumpf6.
Abstract
Dendrite pruning of Drosophila sensory neurons during metamorphosis is induced by the steroid hormone ecdysone through a transcriptional program. In addition, ecdysone activates the eukaryotic initiation factor 4E-binding protein (4E-BP) to inhibit cap-dependent translation initiation. To uncover how efficient translation of ecdysone targets is achieved under these conditions, we assessed the requirements for translation initiation factors during dendrite pruning. We found that the canonical cap-binding complex eIF4F is dispensable for dendrite pruning, but the eIF3 complex and the helicase eIF4A are required, indicating that differential translation initiation mechanisms are operating during dendrite pruning. eIF4A and eIF3 are stringently required for translation of the ecdysone target Mical, and this depends on the 5' UTR of Mical mRNA. Functional analyses indicate that eIF4A regulates eIF3-mRNA interactions in a helicase-dependent manner. We propose that an eIF3-eIF4A-dependent alternative initiation pathway bypasses 4E-BP to ensure adequate translation of ecdysone-induced genes.Entities:
Keywords: 4E-BP; 5′ UTR; Mical; dendrite; eIF3; eIF4A; ecdysone; pruning
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Year: 2018 PMID: 30157424 DOI: 10.1016/j.celrep.2018.07.074
Source DB: PubMed Journal: Cell Rep Impact factor: 9.423