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Identifying the Translatome of Mouse NEBD-Stage Oocytes via SSP-Profiling; A Novel Polysome Fractionation Method

机译:通过SSP分析鉴定小鼠NEBD阶段卵母细胞的翻译组;一种新颖的多核糖体分级分离方法

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摘要

Meiotic maturation of oocyte relies on pre-synthesised maternal mRNA, the translation of which is highly coordinated in space and time. Here, we provide a detailed polysome profiling protocol that demonstrates a combination of the sucrose gradient ultracentrifugation in small SW55Ti tubes with the qRT-PCR-based quantification of 18S and 28S rRNAs in fractionated polysome profile. This newly optimised method, named Scarce Sample Polysome Profiling (SSP-profiling), is suitable for both scarce and conventional sample sizes and is compatible with downstream RNA-seq to identify polysome associated transcripts. Utilising SSP-profiling we have assayed the translatome of mouse oocytes at the onset of nuclear envelope breakdown (NEBD)—a developmental point, the study of which is important for furthering our understanding of the molecular mechanisms leading to oocyte aneuploidy. Our analyses identified 1847 transcripts with moderate to strong polysome occupancy, including abundantly represented mRNAs encoding mitochondrial and ribosomal proteins, proteasomal components, glycolytic and amino acids synthetic enzymes, proteins involved in cytoskeleton organization plus RNA-binding and translation initiation factors. In addition to transcripts encoding known players of meiotic progression, we also identified several mRNAs encoding proteins of unknown function. Polysome profiles generated using SSP-profiling were more than comparable to those developed using existing conventional approaches, being demonstrably superior in their resolution, reproducibility, versatility, speed of derivation and downstream protocol applicability.
机译:卵母细胞的减数分裂成熟依赖于预先合成的母体mRNA,其翻译在空间和时间上高度协调。在这里,我们提供了详细的多核糖体分析方案,该方案证明了在小型SW55Ti管中进行蔗糖梯度超速离心与分馏多核糖体谱中基于qRT-PCR的18S和28S rRNA定量的结合。这种新近优化的方法称为稀有样品多核糖体分析(SSP-profiling),适用于稀有样品和常规样品,并且与下游RNA-seq兼容,可识别多核糖体相关的转录本。利用SSP分析,我们已经在核包膜破裂(NEBD)发生时分析了小鼠卵母细胞的跨膜组-一个发展点,其研究对于增进我们对导致卵母细胞非整倍性的分子机制的理解很重要。我们的分析鉴定了1847个中等至强多核糖体占用的转录本,包括大量表达的线粒体和核糖体蛋白,蛋白酶体成分,糖酵解和氨基酸合成酶,参与细胞骨架组织的蛋白以及RNA结合和翻译起始因子的mRNA。除了编码已知的减数分裂进程参与者的转录本外,我们还鉴定了几种编码未知功能蛋白的mRNA。使用SSP分析生成的多核糖体图谱与使用现有常规方法开发的多核糖体图谱相比具有更大的可比性,在分辨率,重现性,多功能性,衍生速度和下游方案适用性方面均表现出明显优势。

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