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mRNA poly(A)-tail changes specified by deadenylation broadly reshape translation in Drosophila oocytes and early embryos

机译:通过去腺苷酸化指定的mRNa poly(a)-tail变化广泛地重塑果蝇卵母细胞和早期胚胎的翻译

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摘要

Because maturing oocytes and early embryos lack appreciable transcription, posttranscriptional regulatory processes control their development. To better understand this control, we profiled translational efficiencies and poly(A)-tail lengths throughout Drosophila oocyte maturation and early embryonic development. The correspondence between translational-efficiency changes and tail-length changes indicated that tail-length changes broadly regulate translation until gastrulation, when this coupling disappears. During egg activation, relative changes in poly(A)-tail length, and thus translational efficiency, were largely retained in the absence of cytoplasmic polyadenylation, which indicated that selective poly(A)-tail shortening primarily specifies these changes. Many translational changes depended on PAN GU and Smaug, and these changes were largely attributable to tail-length changes. Our results also revealed the presence of tail-length–independent mechanisms that maintained translation despite tail-length shortening during oocyte maturation, and prevented essentially all translation of bicoid and several other mRNAs before egg activation. In addition to these fundamental insights, our results provide valuable resources for future studies.
机译:由于成熟的卵母细胞和早期胚胎缺乏明显的转录,转录后调控过程控制着它们的发育。为了更好地理解这种控制,我们分析了果蝇卵母细胞成熟和早期胚胎发育过程中的翻译效率和poly(A)-尾巴长度。翻译效率变化和尾巴长度变化之间的对应关系表明,当这种耦合消失时,尾巴长度变化会广泛调节翻译直至直至胃气化。在卵活化过程中,在没有胞质聚腺苷酸化作用的情况下,聚(A)-尾巴长度的相对变化以及翻译效率在很大程度上得以保留,这表明选择性的聚(A)-尾巴缩短主要说明了这些变化。许多翻译变化取决于PAN GU和Smaug,这些变化很大程度上归因于尾巴长度的变化。我们的研究结果还表明存在不依赖尾长的机制,尽管卵母细胞成熟过程中尾长缩短,但仍保持翻译,并在卵活化之前阻止了所有类比和其他几个mRNA的翻译。除了这些基本见解之外,我们的研究结果还为以后的研究提供了宝贵的资源。

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