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首页> 外文期刊>Journal of cell biology >The Ribosomal RNA Processing Machinery Is Recruited to the Nucleolar Domain before RNA Polymerase I during Xenopus laevis Development
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The Ribosomal RNA Processing Machinery Is Recruited to the Nucleolar Domain before RNA Polymerase I during Xenopus laevis Development

机译:在非洲爪蟾发育过程中,在RNA聚合酶I之前,将核糖体RNA加工机械招募至核仁结构域。

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Transcription and splicing of messenger RNAs are temporally and spatially coordinated through the recruitment by RNA polymerase II of processing factors. We questioned whether RNA polymerase I plays a role in the recruitment of the ribosomal RNA (rRNA) processing machinery. During Xenopus laevis embryogenesis, recruitment of the rRNA processing machinery to the nucleolar domain occurs in two steps: two types of precursor structures called prenucleolar bodies (PNBs) form independently throughout the nucleoplasm; and components of PNBs I (fibrillarin, nucleolin, and the U3 and U8 small nucleolar RNAs) fuse to the nucleolar domain before components of PNBs II (B23/NO38). This fusion process is independent of RNA polymerase I activity, as shown by actinomycin D treatment of embryos and by the lack of detectable RNA polymerase I at ribosomal gene loci during fusion. Instead, this process is concomitant with the targeting of maternally derived pre-rRNAs to the nucleolar domain. Absence of fusion was correlated with absence of these pre-rRNAs in nuclei where RNA polymerase II and III are inhibited. Therefore, during X. laevis embryogenesis, the recruitment of the rRNA processing machinery to the nucleolar domain could be dependent on the presence of pre-rRNAs, but is independent of either zygotic RNA polymerase I transcription or the presence of RNA polymerase I itself.
机译:通过RNA聚合酶II募集加工因子,使信使RNA的转录和剪接在时间和空间上协调。我们质疑RNA聚合酶I是否在核糖体RNA(rRNA)加工机制的募集中发挥作用。在非洲爪蟾胚胎发生过程中,将rRNA加工机制募集到核仁结构域的过程分为两个步骤:两种称为前核仁体(PNB)的前体结构在整个核质中独立形成; PNBs I的组成部分(原纤维蛋白,核仁素以及U3和U8小核仁RNA)在PNBs II组成部分(B23 / NO38)之前融合到核仁结构域。这种融合过程与RNA聚合酶I的活性无关,如放线菌素D处理胚胎和融合过程中核糖体基因位点缺乏可检测的RNA聚合酶I所表明的。取而代之的是,该过程与将母体来源的pre-rRNA靶向核仁结构域同时进行。融合的缺乏与细胞核中不存在这些pre-rRNA的情况相关,其中RNA聚合酶II和III被抑制。因此,在X.laevis胚胎发生过程中,rRNA加工机制向核仁结构域的募集可能取决于前rRNA的存在,但与合子RNA聚合酶I转录或RNA聚合酶I本身的存在无关。

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