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Structural aspects of the inactive X chromosome

机译:无活性X染色体的结构方面

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摘要

A striking difference between male and female nuclei was recognized early on by the presence of a condensed chromatin body only in female cells. Mary Lyon proposed that X inactivation or silencing of one X chromosome at random in females caused this structural difference. Subsequent studies have shown that the inactive X chromosome (Xi) does indeed have a very distinctive structure compared to its active counterpart and all autosomes in female mammals. In this review, we will recap the discovery of this fascinating biological phenomenon and seminal studies in the field. We will summarize imaging studies using traditional microscopy and super-resolution technology, which revealed uneven compaction of the Xi. We will then discuss recent findings based on high-throughput sequencing techniques, which uncovered the distinct three-dimensional bipartite configuration of the Xi and the role of specific long non-coding RNAs in eliciting and maintaining this structure. The relative position of specific genomic elements, including genes that escape X inactivation, repeat elements and chromatin features, will be reviewed. Finally, we will discuss the position of the Xi, either near the nuclear periphery or the nucleolus, and the elements implicated in this positioning.
机译:通过仅在雌性细胞中存在浓缩的染色质体,在阳性染色体体内识别雄性和雌性核之间的显着差异。玛丽黎昂提出X在女性中随机的X失活或沉默染色体引起这种结构差异。随后的研究表明,与其活性对应物和雌性哺乳动物中的所有血吸虫相比,无活性X染色体(XI)确实具有非常独特的结构。在本次审查中,我们将重新发现该领域令人着迷的生物现象和精髓研究。我们将总结使用传统显微镜和超分辨率技术的成像研究,阐述了XI的不均匀压实。然后,我们将基于高通量测序技术讨论最近的发现,其揭示了XI的不同的三维双链结构和特定的长非编码RNA在引出和维持该结构方面的作用。将综述特异性基因组元素的相对位置,包括逃逸X失活,重复元素和染色质特征的基因。最后,我们将讨论Xi的位置,邻近核外围或核仁,并且这些元件涉及该定位。

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