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Translational Control of Xenopus Oocyte Meiosis: Toward the Genomic Era

机译:爪蟾卵母细胞减数分裂的翻译控制:走向基因组时代。

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摘要

The study of oocytes has made enormous contributions to the understanding of the G /M transition. The complementarity of investigations carried out on various model organisms has led to the identification of the M-phase promoting factor (MPF) and to unravel the basis of cell cycle regulation. Thanks to the power of biochemical approaches offered by frog oocytes, this model has allowed to identify the core signaling components involved in the regulation of M-phase. A central emerging layer of regulation of cell division regards protein translation. Oocytes are a unique model to tackle this question as they accumulate large quantities of dormant mRNAs to be used during meiosis resumption and progression, as well as the cell divisions during early embryogenesis. Since these events occur in the absence of transcription, they require cascades of successive unmasking, translation, and discarding of these mRNAs, implying a fine regulation of the timing of specific translation. In the last years, the genome has been sequenced and annotated, enabling the development of omics techniques in this model and starting its transition into the genomic era. This review has critically described how the different phases of meiosis are orchestrated by changes in gene expression. The physiological states of the oocyte have been described together with the molecular mechanisms that control the critical transitions during meiosis progression, highlighting the connection between translation control and meiosis dynamics.
机译:卵母细胞的研究对G / M过渡的理解做出了巨大贡献。在各种模式生物上进行的研究的互补性导致了M期促进因子(MPF)的鉴定,并揭示了细胞周期调控的基础。得益于青蛙卵母细胞提供的生化方法的强大功能,该模型可以识别参与M期调控的核心信号成分。细胞分裂调节的新出现的中心层是蛋白质翻译。卵母细胞是解决这个问题的独特模型,因为卵母细胞会积聚大量在减数分裂恢复和进程中使用的休眠mRNA,以及早期胚胎发生过程中的细胞分裂。由于这些事件是在没有转录的情况下发生的,因此它们需要级联依次进行这些mRNA的解掩蔽,翻译和丢弃,这意味着对特定翻译时间的精细调节。在过去的几年中,对基因组进行了测序和注释,从而使该组学组学技术得以发展,并开始了其向基因组时代的过渡。这篇评论批评性地描述了减数分裂的不同阶段是如何通过基因表达的变化来协调的。已经描述了卵母细胞的生理状态以及控制减数分裂进程中关键转变的分子机制,突出了翻译控制与减数分裂动力学之间的联系。

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