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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Construction of synthetic nucleoli in human cells reveals how a major functional nuclear domain is formed and propagated through cell division
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Construction of synthetic nucleoli in human cells reveals how a major functional nuclear domain is formed and propagated through cell division

机译:人类细胞中合成核仁的构建揭示了主要功能性核域如何通过细胞分裂形成和传播

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摘要

Human cell nuclei are functionally organized into structurally stable yet dynamic bodies whose cell cycle inheritance is poorly understood. Here, we investigate the biogenesis and propagation of nucleoli, sites of ribosome biogenesis and key regulators of cellular growth. Nucleolar and cell cycles are intimately connected. Nucleoli disappear during mitosis, reforming around prominent uncharacterized chromosomal features, nucleolar organizer regions (NORs). By examining the effects of UBF depletion on both endogenous NORs and synthetic pseudo- NORs, we reveal its essential role in maintaining competency and establishing a bookmark on mitotic NORs. Furthermore, we demonstrate that neo-NORs, UBF-binding site arrays coupled with rDNA transcription units, direct the de novo biogenesis of functional compartmentalized neonucleoli irrespective of their site of chromosomal integration. For the first time, we establish the sequence requirements for nucleolar biogenesis and provide proof that this is a staged process where UBF-dependent mitotic bookmarking precedes functiondependent nucleolar assembly.
机译:人类细胞核在功能上组织成结构稳定但动态的物体,其对细胞周期遗传的了解很少。在这里,我们调查了核仁的生物发生和繁殖,核糖体生物发生的部位以及细胞生长的关键调控因子。核仁和细胞周期紧密相连。核仁在有丝分裂过程中消失,在突出的未表征的染色体特征,核仁组织区(NORs)周围重新形成。通过检查UBF消耗对内源性NOR和合成假NOR的影响,我们揭示了其在维持能力和建立有丝分裂NOR书签方面的重要作用。此外,我们证明,新的NORs,UBF结合位点阵列与rDNA转录单位耦合,指导功能性区分开的新核仁的从头生物发生,而不管它们的染色体整合位点如何。首次,我们建立了核仁生物发生的序列要求,并提供了证明这是一个分阶段的过程,其中UBF依赖的有丝分裂书签在功能依赖的核仁组装之前。

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