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Recruitment of factors linking transcription and processing of pre-rRNA to NOR chromatin is UBF-dependent and occurs independent of transcription in human cells

机译:招募将前rRNA的转录和加工连接到NOR染色质的因子是UBF依赖性的并且独立于人类细胞中的转录而发生

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摘要

Efficient ribosome biogenesis requires coordination of a highly complex series of events. Early events include pre-RNA transcription, processing, and modification. Analysis in yeast has demonstrated that t-UTPs, components of the U3 snoRNA-containing pre-rRNA processing complex, are required for efficient transcription of ribosomal genes (rDNA) by RNA polymerase I (pol I). Here, we characterize human t-UTPs and establish that their ability to link transcription and pre-rRNA processing is evolutionarily conserved. The pol I transcription factor UBF binds extensively across rDNA throughout the cell cycle, resulting in a specialized form of chromatin that is the hallmark of active nucleolar organizer regions (NORs). Transcriptionally silent pseudo-NORs are ectopic, chromosomally integrated, artificial arrays that mimic this specialized chromatin structure. Pseudo-NORs sequester t-UTPs and factors linking transcription with pre-rRNA modification (Nopp140 and Treacle). Recruitment is independent of transcription, the underlying DNA sequence, and location within the nucleolus. Previously, we have demonstrated that pseudo-NORs sequester every component of the pol I transcription machinery. Taken together, these results highlight the importance of the specialized chromatin structure at active NORs in coordinating early events in ribosome biogenesis and nucleolar formation.
机译:高效的核糖体生物发生需要协调一系列高度复杂的事件。早期事件包括RNA之前的转录,加工和修饰。酵母中的分析表明,t-UTP是含U3 snoRNA的pre-rRNA加工复合物的成分,是RNA聚合酶I(pol I)有效转录核糖体基因(rDNA)所必需的。在这里,我们表征人类的t-UTP,并确定其连接转录和前rRNA加工的能力在进化上是保守的。 pol I转录因子UBF在整个细胞周期内广泛跨rDNA结合,形成染色质的特殊形式,这是活性核仁组织者区域(NORs)的标志。转录沉默的伪NOR是异位的,染色体整合的人工阵列,可模仿这种专门的染色质结构。伪NOR​​s隔离t-UTPs和将转录与rRNA前修饰相关的因子(Nopp140和Treacle)。招聘与转录,基础的DNA序列以及核仁中的位置无关。以前,我们已经证明伪NOR隔离了pol I转录机制的每个组成部分。两者合计,这些结果突出了活跃的NORs的染色质结构在协调核糖体生物发生和核仁形成的早期事件中的重要性。

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