Institute of Animal Science, v.v.i., 104 00, Prague 10, Czech Republic.
Institute of Molecular Genetics ASCR, v.v.i., 142 20, Prague 4, Czech Republic.
Chromosome Res. 2019 Mar;27(1-2):129-140. doi: 10.1007/s10577-018-9590-3. Epub 2018 Nov 8.
Nucleoli are the site of ribosomal RNA production and subunit assembly. In contrast to active nucleoli in somatic cells, where three basic sub-compartments can be observed, mammalian oocytes and early embryos contain atypical nucleoli termed "nucleolus-like bodies" or "nucleolus precursor bodies", respectively. Unlike their somatic counterparts, these structures are composed of dense homogenous fibrillar material and exhibit no polymerase activity. Irrespective of these unusual properties, they have been shown to be absolutely essential for embryonic development, as their microsurgical removal results in developmental arrest. Historically, nucleolus-like and nucleolus precursor bodies have been perceived as passive storage sites of nucleolar material, which is gradually utilized by embryos to construct fully functional nucleoli once they have activated their genome and have started to produce ribosomes. For decades, researchers have been trying to elucidate the composition of these organelles and provide the evidence for their repository role. However, only recently has it become clear that the function of these atypical nucleoli is altogether different, and rather than being involved in ribosome biogenesis, they participate in parental chromatin remodeling, and strikingly, the artificial introduction of a single NPB component is sufficient to rescue the developmental arrest elicited by the NPB removal. In this review, we will describe and summarize the experiments that led to the change in our understanding of these unique structures.
核仁是核糖体 RNA 产生和亚基组装的部位。与体细胞中可以观察到三个基本亚区的活跃核仁不同,哺乳动物卵母细胞和早期胚胎含有称为“核仁样体”或“核仁前体”的非典型核仁。与它们的体细胞对应物不同,这些结构由密集均匀的纤维状物质组成,没有聚合酶活性。尽管具有这些不寻常的特性,但它们对于胚胎发育绝对是必不可少的,因为它们的显微手术去除会导致发育停滞。从历史上看,核仁样体和核仁前体被认为是核仁物质的被动储存场所,一旦胚胎激活其基因组并开始产生核糖体,这些物质就会逐渐被胚胎利用来构建完全功能的核仁。几十年来,研究人员一直在努力阐明这些细胞器的组成,并为其储存作用提供证据。然而,直到最近才清楚地表明,这些非典型核仁的功能完全不同,它们不是参与核糖体生物发生,而是参与亲本染色质重塑,而且引人注目的是,单个 NPB 成分的人工引入足以挽救 NPB 去除引起的发育停滞。在这篇综述中,我们将描述和总结导致我们对这些独特结构的理解发生变化的实验。