María de Las Mercedes Carro, Andrew Grimson, Paula E Cohen
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引用次数: 0
摘要
减数分裂的特点是基因表达的高度调控转变,需要不同的基因调控机制。例如,在雄性哺乳动物中,减数分裂前期 I 阶段的转录活动全面停止,进入后期后转录活动不断增加。之后,随着精子形成的进行,与 DNA 结合的组蛋白被过渡蛋白取代,而过渡蛋白本身又被原胺取代,从而导致细胞核高度浓缩,转录活性受到抑制。此外,在减数分裂前期 I 还发生了两种特殊的基因沉默事件:减数分裂非结合染色质沉默(MSUC)和性染色质特异机制--减数分裂性染色体失活(MSCI)。值得注意的是,与小非编码 RNA 一起发挥作用的 RNA 结合蛋白(RBP)机制被描述为参与了这些减数分裂特异性机制,这表明 RNA 介导的基因调控对许多物种的生育能力至关重要。在这里,我们回顾了小 RNA 及其相关 RBPs 在减数分裂相关过程中的作用,如中心粒功能、非配对染色质沉默和减数分裂重组。我们将讨论这些成分在减数分裂中的非经典功能的新证据。
Small RNAs and their protein partners in animal meiosis.
Meiosis is characterized by highly regulated transitions in gene expression that require diverse mechanisms of gene regulation. For example, in male mammals, transcription undergoes a global shut-down in early prophase I of meiosis, followed by increasing transcriptional activity into pachynema. Later, as spermiogenesis proceeds, the histones bound to DNA are replaced with transition proteins, which are themselves replaced with protamines, resulting in a highly condensed nucleus with repressed transcriptional activity. In addition, two specialized gene silencing events take place during prophase I: meiotic silencing of unsynapsed chromatin (MSUC), and the sex chromatin specific mechanism, meiotic sex chromosome inactivation (MSCI). Notably, conserved roles for the RNA binding protein (RBP) machinery that functions with small non-coding RNAs have been described as participating in these meiosis-specific mechanisms, suggesting that RNA-mediated gene regulation is critical for fertility in many species. Here, we review roles of small RNAs and their associated RBPs in meiosis-related processes such as centromere function, silencing of unpaired chromatin and meiotic recombination. We will discuss the emerging evidence of non-canonical functions of these components in meiosis.