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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >Close to the edge: Heterochromatin at the nucleolar and nuclear peripheries
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Close to the edge: Heterochromatin at the nucleolar and nuclear peripheries

机译:靠近边缘:核仁和核周边的异铬胺

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摘要

Chromatin is a dynamic structure composed of DNA, RNA, and proteins, regulating storage and expression of the genetic material in the nucleus. Heterochromatin plays a crucial role in driving the three-dimensional arrangement of the interphase genome, and in preserving genome stability by maintaining a subset of the genome in a silent state. Spatial genome organization contributes to normal patterns of gene function and expression, and is therefore of broad interest. Mammalian heterochromatin, the focus of this review, mainly localizes at the nuclear periphery, forming Lamina-associated domains (LADs), and at the nucleolar periphery, forming Nucleolus-associated domains (NADs). Together, these regions comprise approximately one-half of mammalian genomes, and most but not all loci within these domains are stochastically placed at either of these two locations after exit from mitosis at each cell cycle. Excitement about the role of these heterochromatic domains in early development has recently been heightened by the discovery that LADs appear at some loci in the preimplantation mouse embryo prior to other chromosomal features like compartmental identity and topologically-associated domains (TADs). While LADs have been extensively studied and mapped during cellular differentiation and early embryonic development, NADs have been less thoroughly studied. Here, we summarize pioneering studies of NADs and LADs, more recent advances in our understanding of cis/trans-acting factors that mediate these localizations, and discuss the functional significance of these associations.
机译:染色质是由DNA,RNA和蛋白质组成的动态结构,调节核中遗传物质的储存和表达。异铬胺在驱动差异基因组的三维布置方面起着至关重要的作用,并通过在沉默状态下维持基因组的子集来保护基因组稳定性。空间基因组组织有助于基因功能和表达的正常模式,因此是广泛的兴趣。哺乳动物杂料素,本综述的焦点主要在核外周定位,形成薄层相关结构域(小伙子),并在核仁周边形成核心相关结构域(NAD)。在一起,这些区域包括大约一半的哺乳动物基因组,并且在这些域内的大多数情况下,除了在每个细胞周期的丝分裂之后,这些结构域内的所有基因座在这两个位置中的任一部分。关于早期发展中这些异色域在早期发展中的作用的兴奋最近被发现在其他染色体特征如隔室同一性和拓扑相关结构域(TADS)之前的预催化小鼠胚胎中出现的一些基因群。虽然小伙子在细胞分化和早期胚胎发育期间已经广泛地研究并映射,但是NADS已经不太彻底研究。在这里,我们总结了NAD和LAD的开创性研究,了解我们对介导这些本地化的CIS / Trans作用因子的更新进展,并讨论了这些协会的功能意义。

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