首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Presence of Pre-rRNAs before Activation of Polymerase I Transcription in the Building Process of Nucleoli during Early Development of Xenopus laevis
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Presence of Pre-rRNAs before Activation of Polymerase I Transcription in the Building Process of Nucleoli during Early Development of Xenopus laevis

机译:非洲爪蟾早期发育过程中核仁构建过程中聚合酶I转录激活之前pre-rRNA的存在。

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摘要

During the early development of Xenopus laevis, we followed in individual nuclei the formation of a nucleolus by examining simultaneously its structural organization and its transcriptional competence. Three distinct situations were encountered with different frequencies during development. During the first period of general transcriptional quiescence, the transcription factor UBF of maternal origin, was present in most nuclei at the ribosomal gene loci. In contrast, fibrillarin, a major protein of the processing machinery, was found in multiple prenucleolar bodies (PNBs) whereas nucleolin was dispersed largely in the nucleoplasm. During the second period, for most nuclei these PNBs had fused into two domains where nucleolin concentrated, generating a structure with most features expected from a transcriptionally competent nucleolus. However, RNA polymerase I–dependent transcription was not detected using run-on in situ assays whereas unprocessed ribosomal RNAs were observed. These RNAs were found to derive from a maternal pool. Later, during a third period, an increasing fraction of the nuclei presented RNA polymerase I–dependent transcription. Thus, the structural organization of the nucleolus preceded its transcriptional competence. We conclude that during the early development of X. laevis, the organization of a defined nucleolar structure, is not associated with the transcription process per se but rather with the presence of unprocessed ribosomal RNAs.
机译:在非洲爪蟾的早期发展过程中,我们通过同时检查核仁的结构组织和转录能力,在单个核中追踪核仁的形成。在开发过程中遇到了三种不同的情况,发生频率不同。在一般的转录静止的第一阶段,在核糖体基因位点的大多数核中都存在母本来源的转录因子UBF。相反,原纤维蛋白是加工机器的主要蛋白质,在多个核仁前体(PNB)中被发现,而核仁蛋白则主要分散在核质中。在第二个阶段中,对于大多数核而言,这些PNB融合到核仁蛋白浓缩的两个域中,生成了具有转录功能核仁预期的大多数功能的结构。然而,使用连续原位检测未检测到RNA聚合酶I依赖性转录,而观察到未加工的核糖体RNA。发现这些RNA来自母体库。后来,在第三阶段,越来越多的核呈现出RNA聚合酶I依赖性转录。因此,核仁的结构组织先于其转录能力。我们得出的结论是,在X.laevis的早期发展过程中,确定的核仁结构的组织本身与转录过程无关,而与未加工的核糖体RNA的存在有关。

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