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Genome-wide analysis of mRNA decay patterns during early Drosophila development

机译:早期果蝇发育中mRNA腐烂模式的基因组分析

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Background The modulation of mRNA levels across tissues and time is key for the establishment and operation of the developmental programs that transform the fertilized egg into a fully formed embryo. Although the developmental mechanisms leading to differential mRNA synthesis are heavily investigated, comparatively little attention is given to the processes of mRNA degradation and how these relate to the molecular programs controlling development. Results Here we combine timed collection of Drosophila embryos and unfertilized eggs with genome-wide microarray technology to determine the degradation patterns of all mRNAs present during early fruit fly development. Our work studies the kinetics of mRNA decay, the contributions of maternally and zygotically encoded factors to mRNA degradation, and the ways in which mRNA decay profiles relate to gene function, mRNA localization patterns, translation rates and protein turnover. We also detect cis -regulatory sequences enriched in transcripts with common degradation patterns and propose several proteins and microRNAs as developmental regulators of mRNA decay during early fruit fly development. Finally, we experimentally validate the effects of a subset of cis -regulatory sequences and trans -regulators in vivo . Conclusions Our work advances the current understanding of the processes controlling mRNA degradation during early Drosophila development, taking us one step closer to the understanding of mRNA decay processes in all animals. Our data also provide a valuable resource for further experimental and computational studies investigating the process of mRNA decay.
机译:背景技术跨组织和时间的mRNA水平的调节是建立和运作的关键,使受精卵转化为完全形成的胚胎。尽管导致差异mRNA合成的发育机制受到严重研究,但对mRNA降解的过程以及这些涉及控制发展的分子课程的过程相对较少。结果在这里,我们将定时收集果蝇胚胎和未受精卵与基因组微阵列技术结合在一起,以确定早期果蝇发育期间所有MRNA的降解模式。我们的工作研究mRNA衰变的动力学,潜水和归因结的因素对mRNA降解的贡献,以及mRNA衰减谱涉及基因函数,mRNA定位模式,翻译率和蛋白质转换的方式。我们还检测具有常见降解模式的转录物中富含转录物的CIS -Regulatory序列,并提出几种蛋白质和MicroRNA作为早期果蝇发育期间mRNA衰变的发育调节剂。最后,我们在实验上验证了CIS -Regulatory序列和反式调节器中的杂志的效果。结论我们的工作推进了目前对果蝇发育期间控制mRNA降解的过程的目前的理解,让我们更接近所有动物MRNA衰变过程的一步。我们的数据还提供了一种有价值的资源,用于研究MRNA衰减过程的进一步实验和计算研究。

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