Gáspár Imre, Sysoev Vasiliy, Komissarov Artem, Ephrussi Anne
Developmental Biology Unit, European Molecular Biology Laboratory, Heidelberg, Germany
Developmental Biology Unit, European Molecular Biology Laboratory, Heidelberg, Germany.
EMBO J. 2017 Feb 1;36(3):319-333. doi: 10.15252/embj.201696038. Epub 2016 Dec 27.
Localization and local translation of oskar mRNA at the posterior pole of the Drosophila oocyte directs abdominal patterning and germline formation in the embryo. The process requires recruitment and precise regulation of motor proteins to form transport-competent mRNPs. We show that the posterior-targeting kinesin-1 is loaded upon nuclear export of oskar mRNPs, prior to their dynein-dependent transport from the nurse cells into the oocyte. We demonstrate that kinesin-1 recruitment requires the DmTropomyosin1-I/C isoform, an atypical RNA-binding tropomyosin that binds directly to dimerizing oskar 3'UTRs. Finally, we show that a small but dynamically changing subset of oskar mRNPs gets loaded with inactive kinesin-1 and that the motor is activated during mid-oogenesis by the functionalized spliced oskar RNA localization element. This inefficient, dynamic recruitment of Khc decoupled from cargo-dependent motor activation constitutes an optimized, coordinated mechanism of mRNP transport, by minimizing interference with other cargo-transport processes and between the cargo-associated dynein and kinesin-1.
果蝇卵母细胞后极处osk基因mRNA的定位和局部翻译指导胚胎腹部模式形成和生殖系形成。该过程需要募集和精确调控运动蛋白以形成具备运输能力的核糖核蛋白颗粒(mRNP)。我们发现,后靶向驱动蛋白-1在osk基因mRNP核输出时加载,先于其从滋养细胞向卵母细胞的动力蛋白依赖性运输。我们证明,驱动蛋白-1的募集需要DmTropomyosin1-I/C同工型,这是一种非典型的RNA结合原肌球蛋白,可直接结合二聚化的osk基因3'非翻译区。最后,我们表明,一小部分动态变化的osk基因mRNP加载了无活性的驱动蛋白-1,并且在卵子发生中期,通过功能化的剪接osk基因RNA定位元件激活该运动蛋白。这种与货物依赖性运动蛋白激活解耦的低效、动态的Khc募集构成了一种优化的、协调的mRNP运输机制,通过最小化对其他货物运输过程以及货物相关动力蛋白和驱动蛋白-1之间的干扰来实现。