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蜕皮激素依赖性果蝇神经元重塑过程中翻译起始因子通路的差异需求。

Differential Requirement for Translation Initiation Factor Pathways during Ecdysone-Dependent Neuronal Remodeling in Drosophila.

机构信息

Institute for Neurobiology, University of Münster, Badestrasse 9, 48149 Münster, Germany.

Institute for Biochemistry, University of Münster, Wilhelm-Klemm-Strasse 2, 48149 Münster, Germany.

出版信息

Cell Rep. 2018 Aug 28;24(9):2287-2299.e4. doi: 10.1016/j.celrep.2018.07.074.

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.

摘要

在变形过程中,果蝇感觉神经元的树突修剪是由类固醇激素蜕皮激素通过一个转录程序诱导的。此外,蜕皮激素激活真核起始因子 4E 结合蛋白(4E-BP)以抑制帽依赖翻译起始。为了揭示在这些条件下蜕皮激素靶标翻译的效率如何实现,我们评估了翻译起始因子在树突修剪过程中的要求。我们发现,典型的帽结合复合物 eIF4F 对于树突修剪是可有可无的,但 eIF3 复合物和解旋酶 eIF4A 是必需的,这表明在树突修剪过程中存在不同的翻译起始机制。eIF4A 和 eIF3 对于蜕皮激素靶标 Mical 的翻译是严格必需的,这取决于 Mical mRNA 的 5'UTR。功能分析表明,eIF4A 以解旋酶依赖的方式调节 eIF3-mRNA 相互作用。我们提出,eIF3-eIF4A 依赖的替代起始途径绕过 4E-BP,以确保蜕皮激素诱导基因的充分翻译。

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