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核仁中 Pol I 和核仁纤维蛋白含量的波动。

Fluctuations of pol I and fibrillarin contents of the nucleoli.

机构信息

a Institute of Biology and Medical Genetics, First Faculty of Medicine , Charles University, and General University Hospital in Prague , Prague , Czech Republic.

b Institute of Biophysics of the CAS , Brno , Czech Republic.

出版信息

Nucleus. 2017 Jul 4;8(4):421-432. doi: 10.1080/19491034.2017.1306160. Epub 2017 Jun 16.

Abstract

Nucleoli are formed on the basis of ribosomal DNA (rDNA) clusters called Nucleolus Organizer Regions (NORs). Each NOR contains multiple genes coding for RNAs of the ribosomal particles. The prominent components of the nucleolar ultrastructure, fibrillar centers (FC) and dense fibrillar components (DFC), together compose FC/DFC units. These units are centers of rDNA transcription by RNA polymerase I (pol I), as well as the early processing events, in which an essential role belongs to fibrillarin. Each FC/DFC unit probably corresponds to a single transcriptionally active gene. In this work, we transfected human-derived cells with GFP-RPA43 (subunit of pol I) and RFP-fibrillarin. Following changes of the fluorescent signals in individual FC/DFC units, we found two kinds of kinetics: 1) the rapid fluctuations with periods of 2-3 min, when the pol I and fibrillarin signals oscillated in anti-phase manner, and the intensities of pol I in the neighboring FC/DFC units did not correlate. 2) fluctuations with periods of 10 to 60 min, in which pol I and fibrillarin signals measured in the same unit did not correlate, but pol I signals in the units belonging to different nucleoli were synchronized. Our data indicate that a complex pulsing activity of transcription as well as early processing is common for ribosomal genes.

摘要

核仁是在称为核仁组织者区域(NORs)的核糖体 DNA(rDNA)簇的基础上形成的。每个 NOR 包含多个编码核糖体颗粒 RNA 的基因。核仁超微结构的突出成分,纤维中心(FC)和密集纤维成分(DFC),共同组成 FC/DFC 单位。这些单位是 RNA 聚合酶 I(pol I)转录 rDNA 的中心,也是早期加工事件的中心,其中纤维蛋白核仁组成成分(fibrillarin)起着重要作用。每个 FC/DFC 单位可能对应一个单独的转录活性基因。在这项工作中,我们用 GFP-RPA43(pol I 的亚基)和 RFP-fibrillarin 转染了人源细胞。在观察到个别 FC/DFC 单位中荧光信号的变化后,我们发现了两种动力学:1)快速波动,周期为 2-3 分钟,此时 pol I 和纤维蛋白核仁组成成分的信号呈反相振荡,并且相邻 FC/DFC 单位中的 pol I 强度不相关。2)波动周期为 10 到 60 分钟,在同一单位中测量的 pol I 和纤维蛋白核仁组成成分的信号不相关,但属于不同核仁的单位中的 pol I 信号是同步的。我们的数据表明,核糖体基因的转录和早期加工的复杂脉冲活动是常见的。

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