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The maternal legacy to the embryo: Cytoplasmic components and theireffects on early development

机译:胚胎的母体遗产:细胞质成分及其对早期发育的影响

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RNA molecules and proteins are accumulated in the oocyte cytoplasm during its growth phase and are used to sustain the early phases of embryonic development before embryo DNA transcription begins. This makes the oocyte a very special cell, quite different from somatic cells where RNA and proteins usually undergo a rapid turnover. To enable the storage and timely use of such stored molecules, various mechanisms are effective in the oocyte and are gradually being elucidated. Our understanding of such mechanisms is important for constantly improving therapy for human and animal reproductive disorders as well as for understanding the process of nuclear reprogramming during cloning procedure or stem cell generation. This review focuses on the various aspects of these regulatory processes in an attempt to give an overview of the present knowledge on post-transcriptional and post-translational mechanisms taking place during oocyte maturation and early development. Mechanisms such as cytoplasmic regulation of the poly(A) tail, RNA localization and protein phosphorylation are described in some detail. Because most data are available from lower species these are presented together with appropriate reference to the mammalian oocyte when data are known, or when important differences have been described.
机译:RNA分子和蛋白质在卵母细胞的生长阶段会积累在卵母细胞的胞质中,并用于在胚胎DNA转录开始之前维持胚胎发育的早期阶段。这使卵母细胞成为非常特殊的细胞,与体细胞不同,体细胞中的RNA和蛋白质通常会快速周转。为了能够储存和及时使用这种储存的分子,各种机制在卵母细胞中是有效的,并且逐渐被阐明。我们对这种机制的理解对于不断改进对人类和动物生殖系统疾病的治疗以及对克隆过程或干细胞生成过程中核重编程过程的理解至关重要。这篇综述着重于这些调节过程的各个方面,以试图概述在卵母细胞成熟和早期发育过程中发生的转录后和翻译后机制的当前知识。详细描述了诸如poly(A)尾巴的细胞质调节,RNA定位和蛋白质磷酸化等机制。由于大多数数据可从低等物种获得,因此在已知数据或描述了重要差异时,将这些数据与对哺乳动物卵母细胞的适当引用一起提供。

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